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Physicists Directly Verify Richard Feynman's 80-Year-Old Quantum Postulate

物理學家直接證實理查·費曼 80 年前提出的量子假說

#quantum physics#physics experiment#Feynman path integral#photons
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Nearly eight decades after Nobel laureate Richard Feynman proposed that quantum particles navigate space by exploring every conceivable route between two points, experimental physicists have directly confirmed his cornerstone postulate for the very first time.

for the very first time= 有史以來第一次、首度

Formulated in 1948, the "Feynman path integral" has long served as a theoretical backbone of modern physics. The principle posits that predicting the most likely path of a quantum particle requires a calculation that effectively sums up all possible trajectories between two locations. While this "sum over all paths" became standard textbook material and indispensable for particle physicists, testing it directly in a physical experiment proved exceedingly difficult because interacting with quantum particles inevitably alters their properties.

serve as= 充當、作為

To test Feynman's idea directly, a research team led by Shi-Liang Zhu at South China Normal University devised an optical experiment of unprecedented precision. The researchers directed individual photons—particles of lightthrough an intricate maze composed of tiny mirrors, lenses, and crystals.

As each photon traveled through the setup, the team measured five successive "propagators"—functions that describe how a photon's quantum state changes as it moves from one section of the experiment to another. By tracking properties such as polarization, the researchers reconstructed propagators corresponding to an astonishing 1,419,857 distinct trajectories through the optical maze. They then multiplied these propagators together and plugged the data into Feynman's path integral formula.

The calculation derived from the experimental data agreed with the photon's actual physical behavior.

The success of the experiment represents a major advance in quantum measurement and control. Managing so many trajectories presented an immense challenge, as cumulative experimental noise and minor errors could have easily corrupted the data into randomness. By demonstrating that Feynman's theoretical formulation directly aligns with empirical observations, the milestone confirms the solid foundation of quantum mechanics and opens new avenues for testing path integrals across different physical materials.

align with= 與……一致、符合open new avenues= 開闢全新的途徑或方向

學習筆記

文法整理

句型意思
for the very first time有史以來第一次、首度
serve as充當、作為
align with與……一致、符合
open new avenues開闢全新的途徑或方向

詞彙整理

單字等級意思
cornerstoneB2基石、奠基石
conceivableB2可想像的、可能的
indispensableB2不可或缺的
intricateB2錯綜複雜的
cumulativeB2累積的、漸增的
postulateC1假定、公理
unprecedentedC1史無前例的、空前的
empiricalC1實證的、經驗上的

延伸學習

  • 理查·費曼於 1948 年提出的路徑積分公式,將量子粒子概念化為同時探索兩點之間所有可能的路徑,從根本上改變了現代量子物理學。由於量子態對外部測量極度敏感,直接進行實驗驗證被推遲了長達八十年。

練習

測試你剛學到的內容。

  1. To test Feynman's idea directly, a research team led by Shi-Liang Zhu at South China Normal University devised an optical experiment of   precision.

  2. Why was directly testing Feynman's path integral in a physical experiment previously so difficult?

  3. What does the pattern 'align with' mean?

Source: New Scientist