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量子戏剧:从玻尔-爱因斯坦辩论到纠缠之谜[有声读物]

English | ASIN: B0DDV1GDKD | 2024 | 13 hours and 58 minutes | M4B@128 kbps | 776 MB

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. 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 center of gravity shifted from a war-ravaged Continental Europe to 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 favor or as superfluous to real physics. 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 before definitive experimental inquiries became possible. Although experiment moved the Bohr-Einstein debate to a new level, it has by no means removed or resolved the fundamental question.

中文|亚洲:B0DDV1GDKD | 2024 | 13小时58分钟|M4B@128kbps | 776 MB 1927年,尼尔斯·玻尔和阿尔伯特·爱因斯坦开始就新量子理论的解释和意义进行辩论。这将成为科学史上最著名的辩论之一。对于科学能告诉我们的物理现实,我们应该对我们的期望设定什么(如果有的话)限制?随着物理学的重心从饱受战争蹂躏的欧洲大陆转移到战后的美国,我们的主角慢慢从物理学的先锋中消失了。爱因斯坦和玻尔认为最重要的事情现在被搁置了。他们的争论要么被认为对玻尔有利,要么被认为是对现实物理学多余的。随着量子纠缠成为一种真实的物理现象,建立了全新的学科,如量子计算、隐形传态和密码学。实验家的努力得到了2022年诺贝尔物理学奖的奖励。正如量子戏剧所揭示的那样,科学在很大程度上归功于那些在最终的实验研究成为可能之前保持讨论的人。尽管实验将玻尔-爱因斯坦的争论提升到了一个新的水平,但它绝没有消除或解决根本问题。
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