3 Physicists Share Nobel Prize For Work On Quantum Science
Secretary General of the Royal Swedish Academy of Sciences Hans Ellegren, centre, Eva Olsson, left and Thors Hans Hansson, members of the Nobel Committee for Physics announce the winner of the 2022 Nobel Prize in Physics, from left to right on the screen, Alain Aspect, John F. Clauser and Anton Zeilinger, during a press conference at the Royal Swedish Academy of Sciences, in Stockholm, Sweden, Tuesday, Oct. 4, 2022. (Jonas Ekstromer /TT News Agency via AP)
BY DAVID KEYTON AND FRANK JORDANSSTOCKHOLM (AP) ā Three scientists jointly won this yearās Nobel Prize in physics on Tuesday for their work on quantum information science that has significant applications, for example in the field of encryption.
Frenchman Alain Aspect, American John F. Clauser and Austrian Anton Zeilinger were cited by the Royal Swedish Academy of Sciences for discovering the way that unseen particles, such as photons or tiny bits of matter, can be linked, or āentangled,ā with each other even when they are separated by large distances.
āBeing a little bit entangled is sort of like being a little bit pregnant. The effect grows on you,ā Clauser said in a Tuesday morning phone interview with The Associated Press.
It all goes back to a feature of the universe that even baffled Albert Einstein and connects matter and light in a tangled, chaotic way.
Clauser, 79, was awarded his prize for a 1972 experiment that helped settle a famous debate about quantum mechanics between Einstein and famed physicist Niels Bohr. Einstein described āa spooky action at a distanceā that he thought would eventually be disproved.
āI was betting on Einstein,ā Clauser said. āBut unfortunately I was wrong and Einstein was wrong and Bohr was right.ā
Clauser said his work on quantum mechanics shows that you canāt confine information to a closed volume, ālike a little box that sits on your deskā ā though even he canāt say why.
āMost people would assume that nature is made out of stuff distributed throughout space and time,ā Clauser said. āAnd that appears not to be the case.ā
Quantum entanglement āhas to do with taking these two photons and then measuring one over here and knowing immediately something about the other one over here,ā said David Haviland, chair of the Nobel Committee for Physics. āAnd if we have this property of entanglement between the two photons, we can establish a common information between two different observers of these quantum objects. And this allows us to do things like secret communication, in ways which werenāt possible to do before.ā
Thatās why quantum information is not an esoteric thought experiment, said Eva Olsson, a member of the Nobel committee. She called it a āvibrant and developing field.ā
āIt has broad and potential implications in areas such as secure information transfer, quantum computing and sensing technology,ā Olsson said. āIts predictions have opened doors to another world, and it has also shaken the very foundations of how we interpret measurements.ā
Everything in the universe could be entangled but āusually the entanglement just kind of washes off. Itās so chaotic and random that when you look at it ... we donāt see anything,ā said Harvard professor Subir Sachdev, who has worked on experiments that look at quantum entangled material consisting of up to 200 atoms. But sometimes scientists can unsnarl just enough to make sense and be useful in everything from encryption to superconductors, he said.
Speaking by phone to a news conference after the announcement, Zeilinger said he was āstill kind of shockedā at hearing he had received the award.
āBut itās a very positive shock,ā said Zeilinger, 77, who is based at the University of Vienna.
Clauser, Aspect, and Zeilinger have figured in Nobel speculation for more than a decade. In 2010 they won the Wolf Prize in Israel, seen as a possible precursor to the Nobel.
While physicists often tackle problems that appear at first glance to be far removed from everyday concerns ā tiny particles and the vast mysteries of space and time ā their research provides the foundations for many practical applications of science.
The Nobel committee said Clauser developed quantum theories first put forward in the 1960s into a practical experiment. Aspect, 75, was able to close a loophole in those theories, while Zeilinger demonstrated a phenomenon called quantum teleportation that effectively allows information to be transmitted over distances.
āUsing entanglement you can transfer all the information which is carried by an object over to some other place where the object is, so to speak, reconstituted,ā said Zeilinger. He added that this only works for tiny particles.
āIt is not like in the Star Trek films (where one is) transporting something, certainly not the person, over some distance,ā he said.
When he began his research, Zeilinger said the experiments were ācompletely philosophical without any possible use or application.ā
Since then, the laureatesā work has been used to develop the fields of quantum computers, quantum networks and secure quantum encrypted communication.
A week of Nobel Prize announcements kicked off Monday with Swedish scientist Svante Paabo receiving the award in medicine Monday for unlocking secrets of Neanderthal DNA that provided key insights into our immune system.
They continue with chemistry on Wednesday and literature on Thursday. The 2022 Nobel Peace Prize will be announced on Friday and the economics award on Oct. 10.
The prizes carry a cash award of 10 million Swedish kronor (nearly $900,000) and will be handed out on Dec. 10. The money comes from a bequest left by the prizeās creator, Swedish inventor Alfred Nobel, who died in 1895.
Jordans reported from Berlin. Seth Borenstein contributed from Kensington, Maryland, and Maddie Burakoff contributed from New York.
Follow all AP stories about the Nobel Prizes at
https://apnews.com/hub/nobel-prizes
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