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Quantum Drama: From the Bohr-Einstein Debate to the Riddle of Entanglement

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The definitive account of the great Bohr-Einstein debate and its continuing legacy

In 1927, Niels Bohr and Albert Einstein began a debate about the interpretation and meaning of the new quantum theory. This would become one of the most famous debates in the history of science. At stake were an understanding of the purpose, and defense of the integrity, of science. What (if any) limits should we place on our expectations for what science can tell us about physical reality?

Our protagonists slowly disappeared from the vanguard of physics, as its centre of gravity shifted from a war-ravaged Continental Europe to a bold, pragmatic, post-war America. What Einstein and Bohr had considered to be matters of the utmost importance were now set aside. Their debate was regarded either as settled in Bohr's favour or as superfluous to real physics.

But the debate was not resolved. The problems of interpretation and meaning persisted, at least in the minds of a few stubborn physicists, such as David Bohm and John Bell, who refused to stop asking awkward questions. The Bohr-Einstein debate was rejoined, now with a new set of protagonists, on a small scale at first. Through their efforts, the debate was revealed to be about physics after all. Their questions did indeed have answers that could be found in a laboratory. As quantum entanglement became a real physical phenomenon, whole new disciplines were established, such as quantum computing, teleportation, and cryptography. The efforts of the experimentalists were rewarded with shares in the 2022 Nobel prize in physics.

As Quantum Drama reveals, science owes a large debt to those who kept the discussions going against the apathy and indifference of most physicists before definitive experimental inquiries became possible. Although experiment moved the Bohr-Einstein debate to a new level and drew many into foundational research, it has by no means removed or resolved the fundamental question. There will be no Nobel prize for an answer. That will not shut off discussion. Our Drama will continue beyond our telling of it and is unlikely to reach its final scene before science ceases or the world ends.

Συγγραφείς: Baggott Jim, Heilbron J.L.
Εκδότης: OXFORD UNIVERSITY PRESS
Σελίδες: 352
ISBN: 9780192846105
Εξώφυλλο: Σκληρό Εξώφυλλο
Αριθμός Έκδοσης: 1
Έτος έκδοσης: 2024

Prologue
Act I: Correspondence to Complementarity
1:Mutual Admiration
2:An Honourable Funeral
3:New Ways to Calculate
4:New Ways to Think
Act II: Uncertainty to Orthodoxy
5:Incompatible Conceptions
6:Measurement and Impossibility
7:EPR, Faust, and the Cat
8:Missionaries of the Copenhagen Spirit
Act III: Orthodoxy to Uncertainty
9:Postwar Hostilities
10:Skirmishes in Princeton
11:Juvenile Deviationism
12:Passing the Torch
Act IV: Productive Inequalities
13:The Theorem of John S. Bell
14:Bell Tests and Protests
15:While the Photons are Dancing
16:Adventures in Quantum Information
17:Where to Cut? Which Way to Go?
Epilogue
Acknowledgements
Figure and Photo Captions/Credits
Endnotes
Sources

Jim Baggott is a freelance science writer. He was a lecturer in chemistry at the University of Reading but left to work with Shell International Petroleum Company and then as an independent business consultant and trainer. His many books include Quantum Space: Loop Quantum Gravity and the Search for the Structure of Space, Time, and the Universe (OUP, 2018), Origins: The Scientific Story of Creation (OUP, 2015), Higgs: The Invention and Discovery of the 'God Particle' (OUP, 2012), A Quantum Story: A History in 40 Moments (OUP, 2011) and A Beginner's Guide to Reality (Penguin, 2005), Quantum Reality: The Quest for the Real Meaning of Quantum Mechanics — A Game of Theories (OUP, 2020), and The Quantum Cookbook: Mathematical Recipes for the Foundations of Quantum Mechanics (OUP, 2020).

J.L. Heilbron is Professor of History and Vice Chancellor, Emeritus, at the University of California, Berkeley. After retiring in 1994, Heilbron taught sporadically at Caltech and Yale, and lived mostly around Oxford, where he has been Senior Research Fellow at Worcester College and the Oxford Museum for the History of Science. His many books, which deal with the history of science from the late Renaissance to the 20th century, include Galileo (OUP, 2012), Love, Literature, and the Quantum Atom: Niels Bohr's 1913 trilogy revisited (OUP, 2013), with Finn Aaserud, and The History of Physics VSI (OUP, 2018). He also served as general editor of the Oxford Companion to the History of Modern Science (OUP 2003).

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