Friday, October 14, 2022
Nobel Prize Physics Winners 2022 | Quantum Entanglement | Alain Aspect, John Clauser Anton Zeilinger
Nobel Prize Physics Winners 2022 | Quantum Entanglement | Alain Aspect, John Clauser Anton Zeilinger
1,113 viewsOct 7, 2022
Futuristic Tech and AI
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Nobel Prize Physics Winners 2022 | Quantum Entanglement & Bell's Inequality by Alain Aspect, John F. Clauser, and Anton Zeilinger
_____________________________________________________
TIME STAMPS:
0:00 Winners of the 2022 Nobel Prize in Physics
0:18 Intro
0:22 background
0:47 What is Quantum Entanglement?
1:31 Example to understand Quantum Entanglement
1:57 Bell’s Theorem and Bell’s Inequality
3:09 John Clauser
3:23 Alain Aspect
3:39 Anton Zeilinger
4:45 Outro
_____________________________________________________
VIDEO DESCRIPTION
This video will give you an understanding of Quantum Entanglement, Bell’s Theorem & Inequality, work did by three Nobel Laureates of 2022 in Physics.
Quantum Entanglement:
Quantum entanglement is a quantum mechanical phenomenon in which the quantum states of two or more objects have to be described with reference to each other, even though the individual objects may be spatially separated.
Bell’s Theorem & Inequality:
Bell’s inequality states that if there are hidden variables, the correlation between the results of a large number of measurements will never exceed a certain value.
The 2022 Nobel Prize in Physics has been awarded to Alain Aspect, John Clauser and Anton Zeilinger for groundbreaking experiments with entangled photons that open a path to advanced quantum technologies. Working independently in the 1970s and 80s, their work established the violation of so-called Bell inequalities and pioneered the field of quantum information science.
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rongmaw lin
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Hamze Boy
Hamze Boy
5 days ago
I am such a big fan of your videos. It inspires me a lot. I like such kind of videos keep them coming. Finally, Thank u for this eye-opening video.❤
The Nobel Prize for Physics in 2022 was awarded "for experiments with entangled photons, establishing the violation of Bell inequalities and pioneering quantum information science". But what does this actually mean?
Around the time quantum mechanics was gaining steam as a way to describe the universe on the smallest scales, there were more and more questions cropping up about the meaning behind the theory. Although it made near-perfect mathematical predictions about what should happen in any given scenario and experiment, it went against a lot of theories that came before it (classical physics) in terms of the assumptions and implications of the theory.
In classical physics, if you get enough information about a system, you can exactly predict how it should behave at a later point in time. For example, if you know a particle's position and speed at a given point in time, you can work out where to find it some time later. This prediction would also work every single time we repeated the experiment of measuring the particle's position at a later point in time.
In quantum mechanics, however, we can get different experimental results for repeating the exact same experiment multiple times. And before each experiment, the only thing we can do is predict the probability of getting each possible measurement result (rather than predicting the exact result we'd get). Before the measurement, the system is in a blend, or superposition, of all possible measurement results. And upon doing a measurement, the wave function "collapses" into the single measurement result we find.
All of this goes against "common sense" and also classical physics. More importantly, this goes against "determinism", the idea that everything follows a set of rules that can exactly predict the result of an experiment given enough knowledge and information about the system.
Einstein, Podolsky, and Rosen (EPR) didn't like this. They used the logic employed by quantum mechanics to try and come up with a logical inconsistency. They studied the behavior (theoretically) of a pair of "quantum entangled" particles, separated by a large distance. Since the particles were entangled, making a measurement on one of them immediately also gave us information about the state of the other. But if quantum mechanics was right about the system being in a superposition before the measurement, and then collapsing right after it, then how did the second particle "know" when the measurement had been made?
They reasoned that the unmeasured particle, in order to obey other laws of physics, would have to instantaneously collapse into the right state (i.e. as soon as the first particle was measured). This went against the idea known as "locality", which said that information can only be communicated between two points of space as quickly as light could travel between them. "Instantaneous" collapse, after all, did occur faster than light could travel between the particles.
Therefore, they showed that the conventional interpretation of quantum mechanics broke both determinism and locality. And this was a problem because both classical physics and Einstein's theories of Relativity were heavily reliant on both principles. So EPR suggested an alternative explanation, known as a "hidden variable" theory.
They suggested that hidden variables, which we would never have access to, were engrained within the particles and told the particle what state to be in at any time and position. This way, we would just "catch" the particle in a particular state when we did a measurement. In other words, the hidden variable determined (deterministically) what state the particles should be in (i.e. no random wave function collapse), and since the variable was engrained into both particles, there was no faster-than-light communication.
Doing an experiment to explain the difference between these two hypotheses (hidden variable vs. quantum) was difficult, until John Bell came along and showed that correlations between results of MULTIPLE such measurements were expected to be different between the hidden variable and quantum theories.
This is where our Nobel Prize winners come in. They each worked on improving Bell's theorem so it could be experimentally verified, did the experiments, closed loopholes, and further developed quantum information theories to study ideas like quantum teleportation!
Thanks for watching, please do check out my links:
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www.nobelprize.org/prizes/physics/2022/summary/
wikipedia.org/wiki/EPR_paradox
0:00 - Quantum Physics Basics
6:27 - EPR Paradox
10:53 - Hidden Variables, Bell's Theorem, Nobel Prize
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Quantum Physics by Parth G
Parth G
248 Comments
rongmaw lin
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Parth G
Pinned by Parth G
Parth G
2 days ago (edited)
Hi friends, thanks so much for watching, and for your support! Please check out my Quantum Mechanics playlist here for some other videos on this rather cool topic :) https://www.youtube.com/playlist?list=PLOlz9q28K2e4Yn2ZqbYI__dYqw5nQ9DST
12
Wayne Adams
Wayne Adams
2 days ago (edited)
The David Bohm book is one of my Quantum Mechanics books. It is a good book, probably among my top three books on the subject. I like to read as many books as possible on various topics because the different approaches give me good ideas for teaching. Sometimes there will be a golden nugget that makes a point better than any I have seen before.
35
Eben Olivier
Eben Olivier
2 days ago
This is an excellent explanation, best I have seen! Looking forward to seeing the Bell inequality being explained some more.
18
Guillotined Chemistry
Guillotined Chemistry
4 hours ago
Thank you for perspective on this and I'm glad my research on this year's prizes brought me to your channel! Congrats to all the winners (though I'm partial to Dr. Clauser, because I dig his vibe).
2
S Alam
S Alam
1 day ago
Digestible even for a high school student like me. You're just getting better and better. I'd love a video on the Bell Inequality if it is even 1/5th as comprehensible for me as this video
6
S Spencer
S Spencer
1 day ago
This was brilliant - and yes please do a video on Bell's theorem. Thank you!
15
Sam
Sam
1 day ago
Absolutely coherent and brilliant explanation. Well done. You have a new subscriber.
7
yougoog1
yougoog1
1 day ago
Thank you Parth for your clear explanation! I wish Einstein was still alive and hear what he would say about the experiments done by these three Nobel Prize winners.
2
Jim's Mind
Jim's Mind
1 day ago
Thanks, your video was one piece that helped me understand this!
The implications for reality are mind blowing.
I think I'm in the camp that there is one wave-function, the entire universe's. Then it's not so surprising that parts of that wave function can become separated but remain correlated and simultaneously collapse when a measurement is made.
4
Christian
Christian
1 day ago
Hey, Parth thank you for the video you explained everything so well and simple so I could understand and you also added a lot of visual examples to enhance the experience, 10/10!!!
2
Buck Rogers
Buck Rogers
2 days ago
Thank you for this. One of the best on this subject/Novel Prize of Physics 2022. Keep up the great work!
4
Mikael Biilmann
Mikael Biilmann
10 hours ago
This was explained so well. Thank you. I have watched many videos on this subject and always got lost, but this was brilliant, even though I struggled towards the end as my brain was struggling to keep up. 😄
Алексей Кастевич
Алексей Кастевич
1 day ago
I'd be glad if you'll cover the topic more in-depth :) Looking forward to your video about Bell's inequality!
1
Pavan Gaonkar
Pavan Gaonkar
2 days ago
I never miss your videos.. keep on producing quality content...
14
Parth G
D Tibor
D Tibor
1 day ago
I don't know what happened, but in the last weeks I discovered many-many smart youtubers like you. Keep up with the work!
1
Imran Afzal
Imran Afzal
1 day ago
Thanks a lot. You always explain very difficult concepts with clearity and with amazing words.
1
Akash Poudel
Akash Poudel
2 days ago
Too good bro... Your simplicity is what I love and respect the most....every time you bring a topic you make it intresting, even if we don't get everything... It's some what like 2018 i have joined your channel... You are a gem .. Wish you the best in life ahead
6
Amartya
Amartya
1 day ago
An amazing explanation! Looking forward to seeing the Bell inequality video
1
Albasit Danoon
Albasit Danoon
2 days ago
excellent, and succinct explanation. Keep the great work. Thanks.
2
Lari Anton
Lari Anton
2 days ago
Such a good explanation!! Thank you! My mind was blown haha
3
Parth G
Abhijeet Sarker
Abhijeet Sarker
2 days ago
Only you can explain more beautifully bell's equality.❤️
10
Parth G
Matias Soto
Matias Soto
1 day ago
Thank you man. I watch many videos and couldn't understand the Nobel prize winners well, but you make it very clear.
Greetings from chile 🇨🇱
1
shivam ojha
shivam ojha
2 days ago
You make all info collective. Good work parth👍 Go for Bells theorem surely we need it
1
G H
G H
2 days ago (edited)
Thank you for your great video on this topic. In my humble opinion, the problem arises because there is a misunderstanding at the level of the measurements and on what we really measure, the measurements are not carried out at a distance but at the level of the correlation therefore very locally. It is all the interest of the EPR experiments to make clear the nature of the measurement in the experiment without which one arrives at absurdities like the instantaneous transmission in complete contradiction with relativity.
2
Ramkrishna Das
Ramkrishna Das
2 days ago
Great video Parth. It will be incomplete without Bell's inequality. There are others, I have watched them but not gotten completely. Something tells me, I will get it if you are the teacher.
1
Big Bopper
Big Bopper
2 days ago
This makes me sad. Educational tubers are always overshadowed by things that don't matter in a few weeks. How are you under 200k subs?
123
Parth G
Parth G
·
Ernest Lau
Ernest Lau
21 minutes ago
Yes, I would really appreciate it if you could do an explanatory video on Bell's Inequality. Waiting eagerly.
Jasjit Singh
Jasjit Singh
1 day ago
Great Video Parth. I am surprised why don’t you have more than a million subscribers. But I am sure you will there very soon.
2
Kilian Potts
Kilian Potts
1 day ago
amazing video! so well done, thanks man :)
Robert Schlesinger
Robert Schlesinger
10 hours ago
Excellent video. Very interesting, informative and worthwhile video.
1
Jaganathan A Ratnasingam
Jaganathan A Ratnasingam
2 days ago
Yes, would love a video on Bell’s inequality.
Christopher
Christopher
2 days ago
Yes, I would definitely like to see your exceptionally clear yet precise mind applied to the Bell's Inequality.
Kai Henningsen
Kai Henningsen
1 day ago
Huh. I just realized (assuming I didn't overlook anything) that there are three different expectations for this problem. Classically we expect the particles to already be in some state; QT says they aren't, but measuring one will instantaneously change the other, but GR says that "instantaneously" isn't even defined - different observers will see one first, the other first, or both at the same time, for any two events! This means that the measurement should really assert the state of the other particle back to a point in time immediately after the two particles split.
1
Uche Odi
Uche Odi
2 days ago
We do need the bell theorem video. Ur videos just make difficult things simple
Chennebicken
Chennebicken
2 days ago
Doesn‘t the many worlds interpretation solve the issue with the locality? Each time, a wave function „collapses“, locally the observer would find himself in a state where somewhere different the particle is measured to be the opposite. The other Observer at the other particle could potentially run down a completely different future.
3
SUMIT BHOI
SUMIT BHOI
1 day ago
With great moustache comes great intelligence. -Albert Einstein
1
santiago mier
santiago mier
5 hours ago
Amazingly well explained, would just liked to have some type of conclusion on what one system being proven right entails for the reality of nature, does this prove that we live in a probilistic universe once and for all?
darknightoftroy
darknightoftroy
5 hours ago
You did a really good job explaining this. I now think I understand the question. I still don't really understand the answer though.
To phrase this in non-physics terms: In the evaluation of the data, were there ways in which the statistical model for evaluating the collapsing wave function theory benefited from its design as a probabilistic system all the way through, that might have biased the results over the hidden factor hypothesis which presumably had probabilistic analysis added on after the fact? I am assuming the evaluation was done through its own statistical analysis of the distribution of the data.
The details of this experiment seem really important. In your phrasing it sounded like you were implying that even the collapsing wave function model didn't predict things perfectly, just better than the hidden information model.
Philosophically, I have some resistance to the collapsing wave function hypothesis for quantum mechanics, but I am open to being convinced to accept it as truth for practical purposes.
You really did a stellar job explaining the first part of this, and I'd love to hear you go into greater detail on Bell's theorem and the experimental observations backing this up.
These things are hard to understand, and hard to explain, but you did a great job communicating this. Keep it up, and thank you.
Rudra Sharma
Rudra Sharma
2 days ago
I have seen many videos on Bell's inequality but can't get the feel of it. Ig your video will change that.☺️
2
Taylor Moskalyk
Taylor Moskalyk
2 days ago (edited)
Please go over Bell's Inequality!! I have been self-studying QM for 6 months now and it's really the one area I have failed to understand: how determinism has been disproven.
boo Jay
boo Jay
2 days ago
Hey Parth, love your channel! Newb question, how do we rectify QM with say, relativity of simultaneity? For example, if there exists a frame for another observer where our past or future is indeed real, how does QM still make this uncertain if someone already knows what the outcome is? It is simply because they could never pass that information onto us?
2
FullMetal
FullMetal
2 days ago
Parth, the moustache fits well.
And also, know, that you have rekindled my love for theoretical physics.
Being a military engineer, I veered off course from that subject, but it is never late to get back.
2
Parth G
Parth G
·
Ayush Merai
Ayush Merai
2 days ago
Yes, I would be more than happy to watch a video on Bell's inequality!!!
Luis Aldamiz
Luis Aldamiz
20 hours ago
Ironically I think that quantum entanglement actually requires of General Relativity to be explained, because only considering that photons do not experience any proper time (i.e. "subjectively" they do not experience any time at all, nor space within their reach either). That should also explain the DCQE experiment and maybe be the how of the "pilot wave" model of wave-particle duality.
1
David Porthouse
David Porthouse
2 days ago
I would like to repeat the experiment with one detector made of antimatter to see if it makes a difference. If that is too dangerous, then I would like to explore the situation by computer simulation. Bell, Clauser, Aspect and Zeilinger have shown that I need to use a nonlocal theory, which is good news. The information which needs to be shifted faster than light is like a one-time pad rather than a book, my simulation will need to make use of a random number generator, and with a RNG we also have the Vernam cipher available to tackle spooky action at a distance.
Why do I say good news? Well at the ensemble level the received equations of quantum mechanics are super-accurate and we can take it for granted that modification of them is forbidden. What we can do in a nonlocal theory is to make a random choice between a spacelike and a timelike integration. Don’t be in a hurry to agree with me, but we do get a new degree of freedom to exploit. We are out of Feynman’s straitjacket.
OnzinEnzovoort
OnzinEnzovoort
2 days ago
Great video, thank you! At some point you said that both locality and statistical independence are violated, but that is not true. The Bell experiments show that either the assumption of locality or statistical independence are broken.
AlwaysDisPutin
AlwaysDisPutin
2 days ago
Interesting. So is the Pauli Exclusion principle because the e.g. 2 electrons have to have opposite spins so that they have a net angular momentum of zero?
1
Unexpected Books
Unexpected Books
2 days ago
Yes, please make a video about Bell’s Inequality.
6
Parth G
PoppeFumanti89
PoppeFumanti89
17 hours ago
Hi Parth G! Ty for your content! I i'd like to know, what software do you use tu create the graphics? I really love them
Trust Green
Trust Green
1 day ago
Finally, quantum mechanics can be understood. “Entanglementsolved”
Anubhav
Anubhav
2 days ago (edited)
I was waiting for this video from you and also Great mustache Parth ji👍
4
Parth G
Matthew Dickau
Matthew Dickau
1 day ago
I think something important to keep clear: it isn't hidden variable models per se that Bell's theorem disproves, but local hidden variable models. Bell himself repeatedly pointed out that there is a hidden variable model which makes all the same predictions as QM and which is not disproven by Bell's theorem, namely, Bohmian mechanics.
It is also worth noting that the EPR argument shows that the assumption of locality actually implies that there must be hidden variables. (See Travis Norsen's articles on Bell's theorem and the EPR argument.) So by EPR, locality -> hidden variables, and by Bell's theorem, locality + hidden variables -> Bell's inequality is satisfied. Stringing the two arguments together, locality -> Bell's inequality is satisfied. But the experimental work of Aspect and others awarded for this 2022 Nobel Prize shows that Bell's inequality is violated. So what they have definitely proved wrong, specifically, is the assumption of locality.
wes johnson
wes johnson
2 days ago
These three proved that nature can generate statistics that no computer, classical or quantum, can generate from a single location. Awesome to contemplate. We are stuck in the classical, Boolean world.
Understanding Quantum Mechanics
The 2nd Quantum Revolution -- Nobel Prize in Physics 2022
271,327 viewsSep 11, 2021
Sabine Hossenfelder
565K subscribers
Check out the math & physics courses that I mentioned (many of which are free!) and support this channel by going to https://brilliant.org/Sabine/
where you can create your Brilliant account. The first 200 will get 20% off the annual premium subscription.
Today I speculate about the Nobel Prize in Physics, and explain why I think it's overdue to go to Aspect, Clauser, and Zeilinger. The probably coolest thing to have come out of their work is quantum teleportation.
At 10 mins 30 seconds I refer to a "list". I didn't mean to say that there literally is such a list! I just meant that they have been discussed as candidates for a long time and almost certainly have been nominated repeatedly.
You can support us on Patreon: https://www.patreon.com/Sabine
0:00 Intro
1:00 From Einstein to Bell
3:39 From Bell to Quantum Teleportation
7:13 Quantum Teleportation
9:33 A Nobel Prize is due
10:37 Sponsor Message
#physics #quantum #science
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Understanding Quantum Mechanics
Sabine Hossenfelder
1,645 Comments
rongmaw lin
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A Star Is Torn
A Star Is Torn
6 days ago
Sabine used quantum mechanics a year ago to predict this week's Nobel Prize winners! Congrats!
76
Feynstein 100
Feynstein 100
1 year ago
Whoever disproves Bell will get the No-Bell prize. Seems fair enough.
509
srivatsava kasibhatla
srivatsava kasibhatla
6 days ago
How spooky that she predicted all three names correctly! I have actually won a bet with one of my friends today regarding the winners of 2022 Nobel in Physics due to this video. 😍
36
Subhanu Saxena
Subhanu Saxena
9 days ago
I am sure the Nobel Committee had this video in the back of their mind for today's Nobel Prize in Physics!
68
Mike Baginy
Mike Baginy
1 year ago
Sabine, I won't pretend to understand the matter you've explained in such detail. But I do find it all terribly interesting! Thanks for your fabulous presentations.
200
Sabine Hossenfelder
John Reasonmill
John Reasonmill
1 year ago
Your channel is a treasure, one of the best "science for average folks" channels I know. I like it when you sometimes tell also about controversial things in the world of science, not just old knowledge + new papers. Super interesting, excellent channel. 10+++
11
Lorenzo Pozza
Lorenzo Pozza
1 year ago
Incredibly well done video, as always
58
Sabine Hossenfelder
Sabine Hossenfelder
·
Lemon Party
Lemon Party
1 year ago
Can't wait to hear more on your progress on superdeterminism. Keep us updated!
35
Iwo Iwanov
Iwo Iwanov
1 year ago
Top-notch research presented in accessible fashion. Just a great channel by Hossenfelder. Keep up this amazing work.
4
Nigel Guest
Nigel Guest
4 days ago
As an engineer, I love your presentations, Sabine. They make sense of subjects that would fry my brain.
salty dodger
salty dodger
1 year ago
I find your presentation challenging but pitched just at the right level for non specialists willing to make the effort to understand a little more of the marvels of the universe, Thanks.
4
Bob Bob
Bob Bob
1 year ago
Great video again as always sabine, if possible can you do a video on your thoughts and opinions on quantized inertia? I've gotten really I to the topic lately and was wondering how viable it actually is
2
J Cortese
J Cortese
1 year ago
I adore this. I love how QM has this loophole that allows something to travel instantaneously from Alice to Bob but you can't tell what's traveled unless you send something else that's limited by the speed of light. The universe is like a cheap lawyer squinting at its own fine print. :-)
8
Philip O'Neill
Philip O'Neill
10 months ago
Thanks for this one, Sabine. I've been trying to figure out why quantum teleportation couldn't be used for FTL communications for a long time - you've just explained it in a nutshell for me! The information on the measurement still needs to be transmitted at the speed of light. Much appreciated!!
1
James Younger, DDS
James Younger, DDS
4 days ago
Really great video, thank you! I'm wondering - is there any theory about the density/amount of the measurement outcome information that Alice sends to Bob, compared to the amount of information Bob gets from the uncovering the quantum state on his end?
Meaning, can Alice send a smaller amount of measurement information than the amount of quantum state information Bob can uncover by using that measurement outcome information?
2
r75shell
r75shell
1 year ago
It would be very nice to have video about loopholes in bell experiments. Because there are plenty of them, and experiments handle several of them but not all at once. My favorite is following: proposed way of measurement is random, but most of experiments actually do multiple experiments with fixed way of measurement. Of course you could calculate expectation value by rearranging sum, but you can't claim that rearranging experiment doesn't have any side-effects.
5
Russell Brooks
Russell Brooks
8 days ago
Today Zeilinger, Aspect & Clauser were awarded the Nobel prize for this work. This video could not have been more timely!
2
Dallin Sprogis
Dallin Sprogis
1 year ago (edited)
Very cool Sabine. I hope you find/discover what you are learning/researching in your study/experiments.
Hey, quantum teleportation will eliminate vehicles and roads. Welcome to the digital age of traffic jams lol.
Thank you for the updated information. It is really interesting to see how much consciousness understands today with the passing of knowledge from one generation to the next. And even though it takes a few more generations of consciousness to think it out in the future. Good to see old knowledge is preserved.
2
Aufenthalt
Aufenthalt
1 year ago
The three potential Nobel's you cited could be summarised in a Nobel for John Bell, who unfortunately passed away too early.
3
Sabine Hossenfelder
·
Robin Sarchiz
Robin Sarchiz
1 year ago
Thank you for explaining Bell’s theorem simply, perhaps you could make an in-depth explanation of it?
1
Hannes R.
Hannes R.
9 days ago (edited)
Congratulations Sabine! Had to think of your video immediately when I just read the news! 😄
3
Doug Thomson
Doug Thomson
6 days ago
Fascinating as usual, Sabine. Many thanks.
1
Mark Allan
Mark Allan
1 year ago (edited)
Thanks Albert, thanks John, thanks Alain, thanks Sabine (our quantum Jedi)
Not available to watch videos every week, but sitting down with a cup or tea, coffee, cocoa.. and binge watching them is equally fun, informative.
Question in here:
Alice generates Entangled State
Alice has 1 part of entangled state
Bob has 1 part of entangled state (2nd part)
Alice takes her quantum information and mixes it together with her-end of the Entangled State.
Alice takes a measurement and records XYZ, good.
*Note: this measurement is unique to Alice's Quantum information + Entangled State = XYZ measurement.
1. The XYZ measurement only partly tells Alice what the state of the mixed system is in.
2. Making an observation on one end of the Entangled State will determine the state on Bob's end as well.
By making the XYZ measurement, Alice pushes the information on her end of the Entangled State over to Bob's part of Entangled State.
How does Bob get this information out?
Bob needs to know the outcome of Alice's measurement - to understand the information-updated(?) on his end of Entangled State.
Bob needs to know the XYZ Measurement.
Alice lets Bob know the outcome of her XYZ measurement.
Pondering:
1. How does Alice send her XYZ measurement to Bob?
2. Quantum entanglement, teleportation is instantaneous, yes?
Question:
Is there a way to sent XYZ measurement to Bob using an Entangled State that he can read as-is?
Is the XYZ measurement sent at a relative snail-pace, using a non-entangled state?
Thank you, Mark
1
steve alston
steve alston
1 year ago
Thank you Sabine for broadening my horizons even further. I love physics but am not intelligent enough to take it any further than a hobby. In a way I guess I'm more into theoretical physics as I spend a lot of time thinking about things I don't understand!
9
Sorion Hex
Sorion Hex
1 year ago
I’ve been discussing this topic intently in the past couple of months with one of my friends actually, and was very excited when I saw the title.
9
Anton Anton
Anton Anton
10 months ago
Discussing those experiments I was actually a little troubled with the assumptions behind hidden variables. They seemed too strict casting away many other hidden variables models.
Qu Phys
Qu Phys
1 year ago
Yes - I fully agree on your Nobel-List …
In other matters: Did you already do a clip on Nick Herbert's patent application for "superluminal communication", and the - finally killing - "No-Cloning Theorem" (by Wootters et al, and others)?
Sabine: fantastic channel!
marcelino galicia
marcelino galicia
5 days ago
Thank you, Sabine, I love the whole idea of quantum mechanics. We can move on to the future now, science is there, and it is going to be like magic nothing is Impossible.
1
PlasmaFoal
PlasmaFoal
1 year ago
Hi Sabine, since time and space are linked via spacetime, can two particles become entangled in the time domain and not just the space domain? Forgive my ignorance (which is limitless unfortunately) but it seems to me that some kind of temporal entanglement might explain the double slit/quantum eraser experiment results. Apologies for the wild speculation but I haven't been able to find any info regarding the possibility of temporal superposition and why it may or may not exist anywhere.
Exxeron2613
Exxeron2613
1 year ago
Love your channel. Keeping my fingers crossed for an episode on negative mass.
1
Daniel Madison
Daniel Madison
1 year ago
Dr Hossenfelder, your videos are the first thing I watch on the weekend. Thank you so much for them. They always end with me wanting more.
6
Raúl P
Raúl P
1 year ago
This is the best explanation for Quantum Teleportation I've seen so far.
2
RustyBolts
RustyBolts
1 year ago
Mind boggling stuff Doc. Love it. Also expecting the emergence of 'Quantum electrobio physics' which to my knowledge is as yet not in existence...?
1
Brook Storm
Brook Storm
1 year ago
Thank you for the clear presentation of a complex , unfamiliar subject. Hopefully, It helps grow the neural synapses.
It sounds like consciousness is being back engineered to manifest amazing things. It will all be self knowledge in the end. You are a gift.
modolief
modolief
1 year ago
Thanks so much for this phenomenal content! I am so glad to hear first hand from a researcher in the field, and also appreciate the care taken to make a clear presentation!
dekipantelija
dekipantelija
1 year ago
Thank you very much for the explanation! Just got out of a french video from Science Etonnante, where they explain the bell inequality and had an interview with Alain Aspect. Now that i saw your video, i understand less poorly the implications of this discovery :)
WWLinkMasterX
WWLinkMasterX
1 year ago (edited)
The metaphor I like to use is a pair of magic treasure chests:
Putting an object in one chest and closing the lid teleports it into the other, regardless of how far apart they are. However, upon closing the lid, this generates a magic key that must be used to open the other chest. The key must be transported classically, below the speed of light. You can try to force open the 'receiver' chest without the key, but that destroys whatever is inside.
So it's not not really good for transportation, but security.
8
Eraser
Eraser
1 year ago
Lets get these two geniuses a Nobel Prize!!!!
Jerry walker
Jerry walker
1 year ago
Thanks Sabine for sharing. I always enjoy your videos.
2
Ed Quesada
Ed Quesada
1 year ago
I really like this video and can't wait to hear about John Bell and Free Will. Thanks Sabine!
Happy Home
Happy Home
1 year ago
Another PhD quality summary of the state of research and how we got here. THANK YOU
UneXplored Dimensions
UneXplored Dimensions
11 months ago
What is your view on Macroscopic quantum mechanics (MQM), involving Objective Semantic Information (OSI) conceived as relational properties (RPs)? Have you read papers by Ravi Gomatam on MQM, Observation problem, Quantum realism etc.?
barretgoat
barretgoat
1 year ago
I can kinda sorta see the benefit of quantum teleportation now. Am I right to say that whatever measurement data you'd have to send is relatively lightweight compared to the information/quantum state that you teleport? Which in turn achieves much faster and more secure means of transporting information and potentially objects?
36
Sabine Hossenfelder
·
_J B_
_J B_
11 months ago
Quick impulsive idea: what if I "primed" the detectors in advance? The state of the two particles Alice and Bob have would be set (not measured) and the detectors would be set to be the same. I would sort of entangle the devices themselves. Then if I mix some additional information into the system and the outcome of the clean system is set then I could send the information instantly to the other end. I can't know that message was sent but that could be done by making measurements on fixed times to see if "something is in the box".
Richard Fleming
Richard Fleming
1 year ago
Thank You Dr Hossenfelder
I NEVER miss one of your videos.
2
MC's Creations
MC's Creations
1 year ago
Pretty interesting indeed! 😃
Thanks a lot, Sabine!!!
Stay safe there with your family! 🖖😊
1
frank x
frank x
1 year ago
Quantum teleportation nicely explained. Thanks Sabine!
1
armando s. rodriguez
armando s. rodriguez
2 days ago
Dr.Sabine you seem to be a combo of Dr.MaxPlanck + Dr.Einstein,very deep + heavy meaning very well explained for bumpkins like me.Thank you,you are likely as brilliant as the gentlemen I just mentioned,if not more.
AlesT
AlesT
1 year ago
Complex subject explained in a simple way. Only true experts can do this 👏
7
David
David
1 year ago (edited)
Happy to see you laying the ground about Superdeterminism. I'm just a physics enthusiast, but have already watched your seminar "Rethinking Superdeterminism" and it's what makes more sense to me about Quantum Mechanics, because it preserves both realism and locality. Either that or the Many Worlds Interpretation, but you have already stated in a previous video that MWI doesn't resolve the measurement problem.
2
Oatmon gen 4
Oatmon gen 4
1 year ago
I think this video could be improved by talking about the math of mixed states. The explanations you did in your earlier video definitely made it clearer what was going on.
1
Sabine Hossenfelder
·
Caleb Jordan
Caleb Jordan
1 year ago
Love your work. Thank you.
GOLDIE
GOLDIE
1 year ago
I study Physics at the University of Vienna and seeing Prof. Zeilinger's name here is so cool! Had the pleasure to work with him during a seminar and he is a very chill guy! It would be amazing, if he got a Nobel Prize and definitely a big motivational boost for his team, his students and for the entire faculty (not saying that we aren't motivated but a little boost is always a good thing!)! Great Video as always!
1
Damian Laugher
Damian Laugher
1 year ago
Another great presentation. A great use for quantum teleportation is presented in Cixin Liu's novel "Three Body Problem". I won't give it away. BTW I just started your "Lost In Math"
Nicolas Duguay
Nicolas Duguay
1 year ago
I want a T-shirt with "that's what we'll talk about tuday" and another with Einstein's face "yes, this guy again"
426
Sabine Hossenfelder
Sabine Hossenfelder
·
Marcelo B.
Marcelo B.
1 year ago
Wonderful, thanks Sabine. I'm sure one day we'll start discovering those hidden variables, but in the meanwhile QM works.
2
transient aardvark
transient aardvark
1 year ago
Wonderfully clear and to the point as always, but there's something I've still not managed to get a clear answer on ...
When Alice mixes her quantum information with that from Bob's entangled particle, Bob's particle changes instantly, ie FTL, BUT he can't decode it til he gets the message from Alice.
But could Alice send her information ahead of time, so although the communication still has to take place after a sub-luminal round trip, they could then communicate FTL (or their grandparents exchange a big box of entangled particles and pre-cooked messages, which means that 50 years later Alice and Bob can then send instant SMSs to each other) ?
Yash Kumar
Yash Kumar
1 year ago (edited)
Great Video! Would love it if there were links to the papers in the description, for people who are more interested to dive deeper.
Ralph Dratman
Ralph Dratman
1 year ago
This is really excellent. Sabine, thank you so much!
2
Dr Gamma D
Dr Gamma D
1 year ago
As an entangled state, the D (deuteron) doesn't get enough attention. Since you know the isospin must add to 1 (for reasons), you don't know which nucleon is a proton or neutron...as that property is entangled. It works just like spin, which is why it's called "isotope-(ic) spin".
Chris Griffith
Chris Griffith
1 year ago
For the first time, we have the engineering and production capability to realize some astounding things with regard to quantum physics. Its going to be a really interesting next twenty years...
5
Erick M
Erick M
2 days ago
I have a silly question: If we can entangle particles in superposition can we use them to implement the double slit experiment? Because if we can, it would mean we could do that experiment multiple times (with different entangled particles), so Alice could use half of the pairs and allow interference in some experiments and not allow them in others (through measurement), so when Bob use the entangled particles (the other half) to recreate the experiments he will find interference in some and non interference in the rest. Is that possible? Because if it is, we could consider the experiments with interference as 0s and those without as 1s (or viceversa) and I'm guessing Bob could recreate the experiments one second later even if he's on Mars. I still don't understand why this is not posible. What am I missing?
Manish Singh
Manish Singh
7 days ago (edited)
Wow Sabine's prediction comes true in Oct 2022👌This video has aged well😊
1
Nature Space
Nature Space
1 year ago
I've decided to push up English level by watching your 'physics' videos. It's challenging but I'm going to give a shot anyways. Thank you for your video :)
2
xxiemeciel
xxiemeciel
5 days ago (edited)
you guessed the nobel winner, it finally happen, you called it :) you couldn't be more spot on on this one :)
1
Tim Veseli
Tim Veseli
1 year ago
Thanks for sharing all your knowledge with us. Greatly appreciated.
2
Sri Bur
Sri Bur
9 days ago (edited)
Came here after today’s Nobel prize announcement. Guess you were right!
3
Jamilur Rahman
Jamilur Rahman
5 days ago
Unbelievable... Nobel prize in physics 2022 is awarded for quantum entanglement
1
Shaughnessy Neal
Shaughnessy Neal
1 year ago
Even the most parsimonious introduction to your topic takes two-thirds of the video. This is as useful and as esoteric as it gets.
1
andrea
andrea
3 months ago
Love you, this is so tied in with my spiritual practices I cannot even begin to tell you because you would not believe it ❤️
Rainer Langlotz
Rainer Langlotz
5 days ago
To be able to accuratly predict this years Noble winners imo points to superdeterminism a the correct interpretation of QM. Now serious: Amazing prediction Sabine!
1
Nathan Leigh
Nathan Leigh
1 year ago
Subscribed, I love finding awesome new channels very informative thank you!
Change Gamer
Change Gamer
1 year ago
@Sabine, please do a video about the Schrödinger equation, before the probabilities were applied to it.
4
Bob Aldo
Bob Aldo
1 year ago
I have heard about theory that states that the distance between objects in space is really just degree of entanglement. I would like to see a video that addresses this.
Tar Alacrin
Tar Alacrin
1 year ago (edited)
Great video as always Sabine, this is the best science channel on YouTube By Far.
It irks me somewhat that when discussing the discrediting of "hidden variable theories" you didn't mention that this was only a discrediting of "local hidden variables". Unless I am mistaken, Debrogle pilot wave theory is yet to be discredited and is somewhat of a nonlocal hidden variable theory.
To me, an explanation of QM which is nonlocal is a much easier pill to swallow than that things are truly non-deterministic. Especially since the dominant understanding of QM today requires some form of nonlocal magic to work anyways.
2
S 1
S 1
1 year ago
Can you please do a video about Quantum Knots?
I suppose they don't want to hand out Noble Prizes because they are suspicious Quantum Mechanics is not compete, but a statistically mathematical description of hidden mechanisms.
JMF
JMF
7 days ago
About 10 years ago as a product manager of a major shipping company was asked to write up a deck on quantum teleportation as i had a bs in physics but went into business. It was a fun project but had to remember quantum mechanics….my final slide only had one word. “No”! My managers were happy😮
Eric Fernandez
Eric Fernandez
7 days ago
You just proved retrocausality with the Nobel prize winners😀
1
Eolicus
Eolicus
1 year ago
1:03 It is always pleasant to hear Einstein's name pronounced correctly.
8
DeAndre Enrico
DeAndre Enrico
1 year ago
That quantum teleportation thing is mind blowing.
Jim Graham
Jim Graham
1 year ago
Thanks Sabine, your talks are informative and inspiring.
It seems to me much of the mystery of quantum mechanics is more related to hangups with our perception of reality rather than reality itself.
Javed Khan
Javed Khan
2 days ago
Well done - what a brilliant prediction!
Dan Campbell
Dan Campbell
1 year ago
Sabine admitting that we don't know everything, and that we have more to explore & learn.
Howard Gary
Howard Gary
1 year ago
It's important to note that quantum teleportation is not a cloning technique. If for example quantum teleportation techniques are ever advanced to the point where all the information about a physical object can be extracted and used to recreate an exact copy of the object at a different location, then the process of extracting that information will in effect destroy the original (or at least leave it in state that is unrecognizable from its original state). No need to lose sleep wondering what would happen if you were teleported to your favorite vacation spot, and upon returning home you were greeted at the door by yourself.
1
J P
J P
1 year ago
Maybe they can send them a “quantum Nobel” in the future.
136
Sabine Hossenfelder
William
William
1 year ago
PLEASE dont make me wait another week to hear more of your awesomeness
Chris Molina - Personal
Chris Molina - Personal
1 year ago
Thanks for the eye-opening explanation. :)
Alex Hutchins
Alex Hutchins
6 months ago
I am hoping for a method of instant communication across any distance with quantum teleportation. Other wise conversing from one solar system to another is going to be hell.
Tadesse H
Tadesse H
5 months ago
Great job Sabine. Quantum revolution can bring about the most needed technological advances here on Earth. More focus should be given, as any attempt to prove challenges beyond Earth (space) are helplessly impossible for generations to come.
Charlie Meyer
Charlie Meyer
1 year ago (edited)
Very interested in what free will has to do with any of this... Looking forward.
Joe Gee
Joe Gee
1 year ago
"Do you guys just put quantum in front of everything?"
I think that was an Antman 2 quote.
30
Elongated Must
Elongated Must
1 year ago
Alice and Bob measure at the same frame but each get opposite spin of the other result. It turns out there are two rolls of films. Timeless...
johnsonmaje
johnsonmaje
1 year ago
The mechanism that assigns spin does it do it sequentially? Is the first orbit of an electron -1/2 or +1/2? Could that mechanism be the hidden variable?
DJ Mechanicom
DJ Mechanicom
1 year ago
Fascinating - I probably understand about 10% though 😄
Matt The Cat
Matt The Cat
5 days ago
Wow you were right. Glad to see QM win the prize!
Dr. Satish Sharma
Dr. Satish Sharma
9 days ago (edited)
Excellent.... madam you are 100% right... all you three predicted in this video 1 year ago , got noble prize 2022... thanks.
1
G C
G C
1 year ago
Friends and Family Teleportation Plan: "I'm sorry Dave. My teleporter is stuck in an infinite Verizon Mobius loop, and exceeded my data limit. Some of your body parts are still in the cloud. Please hold while I contact Alice and Bob at tech support."
24
robert flynn
robert flynn
1 year ago (edited)
I agree with you on nobel prize for work on bell's theory today
It appears einstein is mostly right and deeper foundation to qm exist.
For instance one could just define dark energy or dark matter by equating it to the spin connection reality, up and down. This is calculus
Reality 101. Its in mind and real.
Gus V
Gus V
1 year ago
If quantum physics was really great, it would send the Nobel Prize back in time to John Bell when he was still alive.
2
Antony Stringfellow
Antony Stringfellow
1 year ago
I'd like to see you make a video on the delayed choice quantum eraser. Where effect precedes cause.
I think Albert was onto something when he said:
"Time and space are modes by which we think, and not conditions in which we live."
1
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Understanding Quantum Mechanics
The 2nd Quantum Revolution -- Nobel Prize in Physics 2022
271,327 viewsSep 11, 2021
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Sabine Hossenfelder
565K subscribers
Check out the math & physics courses that I mentioned (many of which are free!) and support this channel by going to https://brilliant.org/Sabine/
where you can create your Brilliant account. The first 200 will get 20% off the annual premium subscription.
Today I speculate about the Nobel Prize in Physics, and explain why I think it's overdue to go to Aspect, Clauser, and Zeilinger. The probably coolest thing to have come out of their work is quantum teleportation.
At 10 mins 30 seconds I refer to a "list". I didn't mean to say that there literally is such a list! I just meant that they have been discussed as candidates for a long time and almost certainly have been nominated repeatedly.
You can support us on Patreon: https://www.patreon.com/Sabine
0:00 Intro
1:00 From Einstein to Bell
3:39 From Bell to Quantum Teleportation
7:13 Quantum Teleportation
9:33 A Nobel Prize is due
10:37 Sponsor Message
#physics #quantum #science
Chapters
Featured playlist
15 videos
Understanding Quantum Mechanics
Sabine Hossenfelder
1,645 Comments
rongmaw lin
Add a comment...
A Star Is Torn
A Star Is Torn
6 days ago
Sabine used quantum mechanics a year ago to predict this week's Nobel Prize winners! Congrats!
76
Feynstein 100
Feynstein 100
1 year ago
Whoever disproves Bell will get the No-Bell prize. Seems fair enough.
509
srivatsava kasibhatla
srivatsava kasibhatla
6 days ago
How spooky that she predicted all three names correctly! I have actually won a bet with one of my friends today regarding the winners of 2022 Nobel in Physics due to this video. 😍
36
Subhanu Saxena
Subhanu Saxena
9 days ago
I am sure the Nobel Committee had this video in the back of their mind for today's Nobel Prize in Physics!
68
Mike Baginy
Mike Baginy
1 year ago
Sabine, I won't pretend to understand the matter you've explained in such detail. But I do find it all terribly interesting! Thanks for your fabulous presentations.
200
Sabine Hossenfelder
John Reasonmill
John Reasonmill
1 year ago
Your channel is a treasure, one of the best "science for average folks" channels I know. I like it when you sometimes tell also about controversial things in the world of science, not just old knowledge + new papers. Super interesting, excellent channel. 10+++
11
Lorenzo Pozza
Lorenzo Pozza
1 year ago
Incredibly well done video, as always
58
Sabine Hossenfelder
Sabine Hossenfelder
·
Lemon Party
Lemon Party
1 year ago
Can't wait to hear more on your progress on superdeterminism. Keep us updated!
35
Iwo Iwanov
Iwo Iwanov
1 year ago
Top-notch research presented in accessible fashion. Just a great channel by Hossenfelder. Keep up this amazing work.
4
Nigel Guest
Nigel Guest
4 days ago
As an engineer, I love your presentations, Sabine. They make sense of subjects that would fry my brain.
salty dodger
salty dodger
1 year ago
I find your presentation challenging but pitched just at the right level for non specialists willing to make the effort to understand a little more of the marvels of the universe, Thanks.
4
Bob Bob
Bob Bob
1 year ago
Great video again as always sabine, if possible can you do a video on your thoughts and opinions on quantized inertia? I've gotten really I to the topic lately and was wondering how viable it actually is
2
J Cortese
J Cortese
1 year ago
I adore this. I love how QM has this loophole that allows something to travel instantaneously from Alice to Bob but you can't tell what's traveled unless you send something else that's limited by the speed of light. The universe is like a cheap lawyer squinting at its own fine print. :-)
8
Philip O'Neill
Philip O'Neill
10 months ago
Thanks for this one, Sabine. I've been trying to figure out why quantum teleportation couldn't be used for FTL communications for a long time - you've just explained it in a nutshell for me! The information on the measurement still needs to be transmitted at the speed of light. Much appreciated!!
1
James Younger, DDS
James Younger, DDS
4 days ago
Really great video, thank you! I'm wondering - is there any theory about the density/amount of the measurement outcome information that Alice sends to Bob, compared to the amount of information Bob gets from the uncovering the quantum state on his end?
Meaning, can Alice send a smaller amount of measurement information than the amount of quantum state information Bob can uncover by using that measurement outcome information?
2
r75shell
r75shell
1 year ago
It would be very nice to have video about loopholes in bell experiments. Because there are plenty of them, and experiments handle several of them but not all at once. My favorite is following: proposed way of measurement is random, but most of experiments actually do multiple experiments with fixed way of measurement. Of course you could calculate expectation value by rearranging sum, but you can't claim that rearranging experiment doesn't have any side-effects.
5
Russell Brooks
Russell Brooks
8 days ago
Today Zeilinger, Aspect & Clauser were awarded the Nobel prize for this work. This video could not have been more timely!
2
Dallin Sprogis
Dallin Sprogis
1 year ago (edited)
Very cool Sabine. I hope you find/discover what you are learning/researching in your study/experiments.
Hey, quantum teleportation will eliminate vehicles and roads. Welcome to the digital age of traffic jams lol.
Thank you for the updated information. It is really interesting to see how much consciousness understands today with the passing of knowledge from one generation to the next. And even though it takes a few more generations of consciousness to think it out in the future. Good to see old knowledge is preserved.
2
Aufenthalt
Aufenthalt
1 year ago
The three potential Nobel's you cited could be summarised in a Nobel for John Bell, who unfortunately passed away too early.
3
Sabine Hossenfelder
·
Robin Sarchiz
Robin Sarchiz
1 year ago
Thank you for explaining Bell’s theorem simply, perhaps you could make an in-depth explanation of it?
1
Hannes R.
Hannes R.
9 days ago (edited)
Congratulations Sabine! Had to think of your video immediately when I just read the news! 😄
3
Doug Thomson
Doug Thomson
6 days ago
Fascinating as usual, Sabine. Many thanks.
1
Mark Allan
Mark Allan
1 year ago (edited)
Thanks Albert, thanks John, thanks Alain, thanks Sabine (our quantum Jedi)
Not available to watch videos every week, but sitting down with a cup or tea, coffee, cocoa.. and binge watching them is equally fun, informative.
Question in here:
Alice generates Entangled State
Alice has 1 part of entangled state
Bob has 1 part of entangled state (2nd part)
Alice takes her quantum information and mixes it together with her-end of the Entangled State.
Alice takes a measurement and records XYZ, good.
*Note: this measurement is unique to Alice's Quantum information + Entangled State = XYZ measurement.
1. The XYZ measurement only partly tells Alice what the state of the mixed system is in.
2. Making an observation on one end of the Entangled State will determine the state on Bob's end as well.
By making the XYZ measurement, Alice pushes the information on her end of the Entangled State over to Bob's part of Entangled State.
How does Bob get this information out?
Bob needs to know the outcome of Alice's measurement - to understand the information-updated(?) on his end of Entangled State.
Bob needs to know the XYZ Measurement.
Alice lets Bob know the outcome of her XYZ measurement.
Pondering:
1. How does Alice send her XYZ measurement to Bob?
2. Quantum entanglement, teleportation is instantaneous, yes?
Question:
Is there a way to sent XYZ measurement to Bob using an Entangled State that he can read as-is?
Is the XYZ measurement sent at a relative snail-pace, using a non-entangled state?
Thank you, Mark
1
steve alston
steve alston
1 year ago
Thank you Sabine for broadening my horizons even further. I love physics but am not intelligent enough to take it any further than a hobby. In a way I guess I'm more into theoretical physics as I spend a lot of time thinking about things I don't understand!
9
Sorion Hex
Sorion Hex
1 year ago
I’ve been discussing this topic intently in the past couple of months with one of my friends actually, and was very excited when I saw the title.
9
Anton Anton
Anton Anton
10 months ago
Discussing those experiments I was actually a little troubled with the assumptions behind hidden variables. They seemed too strict casting away many other hidden variables models.
Qu Phys
Qu Phys
1 year ago
Yes - I fully agree on your Nobel-List …
In other matters: Did you already do a clip on Nick Herbert's patent application for "superluminal communication", and the - finally killing - "No-Cloning Theorem" (by Wootters et al, and others)?
Sabine: fantastic channel!
marcelino galicia
marcelino galicia
5 days ago
Thank you, Sabine, I love the whole idea of quantum mechanics. We can move on to the future now, science is there, and it is going to be like magic nothing is Impossible.
1
PlasmaFoal
PlasmaFoal
1 year ago
Hi Sabine, since time and space are linked via spacetime, can two particles become entangled in the time domain and not just the space domain? Forgive my ignorance (which is limitless unfortunately) but it seems to me that some kind of temporal entanglement might explain the double slit/quantum eraser experiment results. Apologies for the wild speculation but I haven't been able to find any info regarding the possibility of temporal superposition and why it may or may not exist anywhere.
Exxeron2613
Exxeron2613
1 year ago
Love your channel. Keeping my fingers crossed for an episode on negative mass.
1
Daniel Madison
Daniel Madison
1 year ago
Dr Hossenfelder, your videos are the first thing I watch on the weekend. Thank you so much for them. They always end with me wanting more.
6
Raúl P
Raúl P
1 year ago
This is the best explanation for Quantum Teleportation I've seen so far.
2
RustyBolts
RustyBolts
1 year ago
Mind boggling stuff Doc. Love it. Also expecting the emergence of 'Quantum electrobio physics' which to my knowledge is as yet not in existence...?
1
Brook Storm
Brook Storm
1 year ago
Thank you for the clear presentation of a complex , unfamiliar subject. Hopefully, It helps grow the neural synapses.
It sounds like consciousness is being back engineered to manifest amazing things. It will all be self knowledge in the end. You are a gift.
modolief
modolief
1 year ago
Thanks so much for this phenomenal content! I am so glad to hear first hand from a researcher in the field, and also appreciate the care taken to make a clear presentation!
dekipantelija
dekipantelija
1 year ago
Thank you very much for the explanation! Just got out of a french video from Science Etonnante, where they explain the bell inequality and had an interview with Alain Aspect. Now that i saw your video, i understand less poorly the implications of this discovery :)
WWLinkMasterX
WWLinkMasterX
1 year ago (edited)
The metaphor I like to use is a pair of magic treasure chests:
Putting an object in one chest and closing the lid teleports it into the other, regardless of how far apart they are. However, upon closing the lid, this generates a magic key that must be used to open the other chest. The key must be transported classically, below the speed of light. You can try to force open the 'receiver' chest without the key, but that destroys whatever is inside.
So it's not not really good for transportation, but security.
8
Eraser
Eraser
1 year ago
Lets get these two geniuses a Nobel Prize!!!!
Jerry walker
Jerry walker
1 year ago
Thanks Sabine for sharing. I always enjoy your videos.
2
Ed Quesada
Ed Quesada
1 year ago
I really like this video and can't wait to hear about John Bell and Free Will. Thanks Sabine!
Happy Home
Happy Home
1 year ago
Another PhD quality summary of the state of research and how we got here. THANK YOU
UneXplored Dimensions
UneXplored Dimensions
11 months ago
What is your view on Macroscopic quantum mechanics (MQM), involving Objective Semantic Information (OSI) conceived as relational properties (RPs)? Have you read papers by Ravi Gomatam on MQM, Observation problem, Quantum realism etc.?
barretgoat
barretgoat
1 year ago
I can kinda sorta see the benefit of quantum teleportation now. Am I right to say that whatever measurement data you'd have to send is relatively lightweight compared to the information/quantum state that you teleport? Which in turn achieves much faster and more secure means of transporting information and potentially objects?
36
Sabine Hossenfelder
·
_J B_
_J B_
11 months ago
Quick impulsive idea: what if I "primed" the detectors in advance? The state of the two particles Alice and Bob have would be set (not measured) and the detectors would be set to be the same. I would sort of entangle the devices themselves. Then if I mix some additional information into the system and the outcome of the clean system is set then I could send the information instantly to the other end. I can't know that message was sent but that could be done by making measurements on fixed times to see if "something is in the box".
Richard Fleming
Richard Fleming
1 year ago
Thank You Dr Hossenfelder
I NEVER miss one of your videos.
2
MC's Creations
MC's Creations
1 year ago
Pretty interesting indeed! 😃
Thanks a lot, Sabine!!!
Stay safe there with your family! 🖖😊
1
frank x
frank x
1 year ago
Quantum teleportation nicely explained. Thanks Sabine!
1
armando s. rodriguez
armando s. rodriguez
2 days ago
Dr.Sabine you seem to be a combo of Dr.MaxPlanck + Dr.Einstein,very deep + heavy meaning very well explained for bumpkins like me.Thank you,you are likely as brilliant as the gentlemen I just mentioned,if not more.
AlesT
AlesT
1 year ago
Complex subject explained in a simple way. Only true experts can do this 👏
7
David
David
1 year ago (edited)
Happy to see you laying the ground about Superdeterminism. I'm just a physics enthusiast, but have already watched your seminar "Rethinking Superdeterminism" and it's what makes more sense to me about Quantum Mechanics, because it preserves both realism and locality. Either that or the Many Worlds Interpretation, but you have already stated in a previous video that MWI doesn't resolve the measurement problem.
2
Oatmon gen 4
Oatmon gen 4
1 year ago
I think this video could be improved by talking about the math of mixed states. The explanations you did in your earlier video definitely made it clearer what was going on.
1
Sabine Hossenfelder
·
Caleb Jordan
Caleb Jordan
1 year ago
Love your work. Thank you.
GOLDIE
GOLDIE
1 year ago
I study Physics at the University of Vienna and seeing Prof. Zeilinger's name here is so cool! Had the pleasure to work with him during a seminar and he is a very chill guy! It would be amazing, if he got a Nobel Prize and definitely a big motivational boost for his team, his students and for the entire faculty (not saying that we aren't motivated but a little boost is always a good thing!)! Great Video as always!
1
Damian Laugher
Damian Laugher
1 year ago
Another great presentation. A great use for quantum teleportation is presented in Cixin Liu's novel "Three Body Problem". I won't give it away. BTW I just started your "Lost In Math"
Nicolas Duguay
Nicolas Duguay
1 year ago
I want a T-shirt with "that's what we'll talk about tuday" and another with Einstein's face "yes, this guy again"
426
Sabine Hossenfelder
Sabine Hossenfelder
·
Marcelo B.
Marcelo B.
1 year ago
Wonderful, thanks Sabine. I'm sure one day we'll start discovering those hidden variables, but in the meanwhile QM works.
2
transient aardvark
transient aardvark
1 year ago
Wonderfully clear and to the point as always, but there's something I've still not managed to get a clear answer on ...
When Alice mixes her quantum information with that from Bob's entangled particle, Bob's particle changes instantly, ie FTL, BUT he can't decode it til he gets the message from Alice.
But could Alice send her information ahead of time, so although the communication still has to take place after a sub-luminal round trip, they could then communicate FTL (or their grandparents exchange a big box of entangled particles and pre-cooked messages, which means that 50 years later Alice and Bob can then send instant SMSs to each other) ?
Yash Kumar
Yash Kumar
1 year ago (edited)
Great Video! Would love it if there were links to the papers in the description, for people who are more interested to dive deeper.
Ralph Dratman
Ralph Dratman
1 year ago
This is really excellent. Sabine, thank you so much!
2
Dr Gamma D
Dr Gamma D
1 year ago
As an entangled state, the D (deuteron) doesn't get enough attention. Since you know the isospin must add to 1 (for reasons), you don't know which nucleon is a proton or neutron...as that property is entangled. It works just like spin, which is why it's called "isotope-(ic) spin".
Chris Griffith
Chris Griffith
1 year ago
For the first time, we have the engineering and production capability to realize some astounding things with regard to quantum physics. Its going to be a really interesting next twenty years...
5
Erick M
Erick M
2 days ago
I have a silly question: If we can entangle particles in superposition can we use them to implement the double slit experiment? Because if we can, it would mean we could do that experiment multiple times (with different entangled particles), so Alice could use half of the pairs and allow interference in some experiments and not allow them in others (through measurement), so when Bob use the entangled particles (the other half) to recreate the experiments he will find interference in some and non interference in the rest. Is that possible? Because if it is, we could consider the experiments with interference as 0s and those without as 1s (or viceversa) and I'm guessing Bob could recreate the experiments one second later even if he's on Mars. I still don't understand why this is not posible. What am I missing?
Manish Singh
Manish Singh
7 days ago (edited)
Wow Sabine's prediction comes true in Oct 2022👌This video has aged well😊
1
Nature Space
Nature Space
1 year ago
I've decided to push up English level by watching your 'physics' videos. It's challenging but I'm going to give a shot anyways. Thank you for your video :)
2
xxiemeciel
xxiemeciel
5 days ago (edited)
you guessed the nobel winner, it finally happen, you called it :) you couldn't be more spot on on this one :)
1
Tim Veseli
Tim Veseli
1 year ago
Thanks for sharing all your knowledge with us. Greatly appreciated.
2
Sri Bur
Sri Bur
9 days ago (edited)
Came here after today’s Nobel prize announcement. Guess you were right!
3
Jamilur Rahman
Jamilur Rahman
5 days ago
Unbelievable... Nobel prize in physics 2022 is awarded for quantum entanglement
1
Shaughnessy Neal
Shaughnessy Neal
1 year ago
Even the most parsimonious introduction to your topic takes two-thirds of the video. This is as useful and as esoteric as it gets.
1
andrea
andrea
3 months ago
Love you, this is so tied in with my spiritual practices I cannot even begin to tell you because you would not believe it ❤️
Rainer Langlotz
Rainer Langlotz
5 days ago
To be able to accuratly predict this years Noble winners imo points to superdeterminism a the correct interpretation of QM. Now serious: Amazing prediction Sabine!
1
Nathan Leigh
Nathan Leigh
1 year ago
Subscribed, I love finding awesome new channels very informative thank you!
Change Gamer
Change Gamer
1 year ago
@Sabine, please do a video about the Schrödinger equation, before the probabilities were applied to it.
4
Bob Aldo
Bob Aldo
1 year ago
I have heard about theory that states that the distance between objects in space is really just degree of entanglement. I would like to see a video that addresses this.
Tar Alacrin
Tar Alacrin
1 year ago (edited)
Great video as always Sabine, this is the best science channel on YouTube By Far.
It irks me somewhat that when discussing the discrediting of "hidden variable theories" you didn't mention that this was only a discrediting of "local hidden variables". Unless I am mistaken, Debrogle pilot wave theory is yet to be discredited and is somewhat of a nonlocal hidden variable theory.
To me, an explanation of QM which is nonlocal is a much easier pill to swallow than that things are truly non-deterministic. Especially since the dominant understanding of QM today requires some form of nonlocal magic to work anyways.
2
S 1
S 1
1 year ago
Can you please do a video about Quantum Knots?
I suppose they don't want to hand out Noble Prizes because they are suspicious Quantum Mechanics is not compete, but a statistically mathematical description of hidden mechanisms.
JMF
JMF
7 days ago
About 10 years ago as a product manager of a major shipping company was asked to write up a deck on quantum teleportation as i had a bs in physics but went into business. It was a fun project but had to remember quantum mechanics….my final slide only had one word. “No”! My managers were happy😮
Eric Fernandez
Eric Fernandez
7 days ago
You just proved retrocausality with the Nobel prize winners😀
1
Eolicus
Eolicus
1 year ago
1:03 It is always pleasant to hear Einstein's name pronounced correctly.
8
DeAndre Enrico
DeAndre Enrico
1 year ago
That quantum teleportation thing is mind blowing.
Jim Graham
Jim Graham
1 year ago
Thanks Sabine, your talks are informative and inspiring.
It seems to me much of the mystery of quantum mechanics is more related to hangups with our perception of reality rather than reality itself.
Javed Khan
Javed Khan
2 days ago
Well done - what a brilliant prediction!
Dan Campbell
Dan Campbell
1 year ago
Sabine admitting that we don't know everything, and that we have more to explore & learn.
Howard Gary
Howard Gary
1 year ago
It's important to note that quantum teleportation is not a cloning technique. If for example quantum teleportation techniques are ever advanced to the point where all the information about a physical object can be extracted and used to recreate an exact copy of the object at a different location, then the process of extracting that information will in effect destroy the original (or at least leave it in state that is unrecognizable from its original state). No need to lose sleep wondering what would happen if you were teleported to your favorite vacation spot, and upon returning home you were greeted at the door by yourself.
1
J P
J P
1 year ago
Maybe they can send them a “quantum Nobel” in the future.
136
Sabine Hossenfelder
William
William
1 year ago
PLEASE dont make me wait another week to hear more of your awesomeness
Chris Molina - Personal
Chris Molina - Personal
1 year ago
Thanks for the eye-opening explanation. :)
Alex Hutchins
Alex Hutchins
6 months ago
I am hoping for a method of instant communication across any distance with quantum teleportation. Other wise conversing from one solar system to another is going to be hell.
Tadesse H
Tadesse H
5 months ago
Great job Sabine. Quantum revolution can bring about the most needed technological advances here on Earth. More focus should be given, as any attempt to prove challenges beyond Earth (space) are helplessly impossible for generations to come.
Charlie Meyer
Charlie Meyer
1 year ago (edited)
Very interested in what free will has to do with any of this... Looking forward.
Joe Gee
Joe Gee
1 year ago
"Do you guys just put quantum in front of everything?"
I think that was an Antman 2 quote.
30
Elongated Must
Elongated Must
1 year ago
Alice and Bob measure at the same frame but each get opposite spin of the other result. It turns out there are two rolls of films. Timeless...
johnsonmaje
johnsonmaje
1 year ago
The mechanism that assigns spin does it do it sequentially? Is the first orbit of an electron -1/2 or +1/2? Could that mechanism be the hidden variable?
DJ Mechanicom
DJ Mechanicom
1 year ago
Fascinating - I probably understand about 10% though 😄
Matt The Cat
Matt The Cat
5 days ago
Wow you were right. Glad to see QM win the prize!
Dr. Satish Sharma
Dr. Satish Sharma
9 days ago (edited)
Excellent.... madam you are 100% right... all you three predicted in this video 1 year ago , got noble prize 2022... thanks.
1
G C
G C
1 year ago
Friends and Family Teleportation Plan: "I'm sorry Dave. My teleporter is stuck in an infinite Verizon Mobius loop, and exceeded my data limit. Some of your body parts are still in the cloud. Please hold while I contact Alice and Bob at tech support."
24
robert flynn
robert flynn
1 year ago (edited)
I agree with you on nobel prize for work on bell's theory today
It appears einstein is mostly right and deeper foundation to qm exist.
For instance one could just define dark energy or dark matter by equating it to the spin connection reality, up and down. This is calculus
Reality 101. Its in mind and real.
Gus V
Gus V
1 year ago
If quantum physics was really great, it would send the Nobel Prize back in time to John Bell when he was still alive.
2
Antony Stringfellow
Antony Stringfellow
1 year ago
I'd like to see you make a video on the delayed choice quantum eraser. Where effect precedes cause.
I think Albert was onto something when he said:
"Time and space are modes by which we think, and not conditions in which we live."
1
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