首页> 外文期刊>European journal of physics: A journal of the European Physical Society >Description of diffraction-grating experiments for photons and electrons in Feynman's spacetime formulation of quantum mechanics: The quantum origins of classical wave theories of light and massive particles
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Description of diffraction-grating experiments for photons and electrons in Feynman's spacetime formulation of quantum mechanics: The quantum origins of classical wave theories of light and massive particles

机译:费曼量子力学的时空公式中光子和电子的衍射光栅实验的描述:光和质点的经典波动理论的量子起源

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摘要

The five laws of relativistic quantum mechanics, according to Feynman's path integral formulation, are concisely stated and applied to experiments. Reflection-diffraction-grating experiments for both photons and electrons are analysed, in particular, the Davisson-Germer experiment in which the wave-like property of electrons was first established. It is shown how classical, purely spatial, effective wave theories for both photons and electrons are predicted by the path integral formulation of quantum mechanics. The standard Copenhagen interpretation of wave mechanics is critically discussed in the light of the described experimental applications of the path integral formulation.
机译:根据费曼的路径积分公式,相对论量子力学的五个定律被简明地陈述并应用于实验。分析了光子和电子的反射衍射光栅实验,特别是戴维森-杰默(Davisson-Germer)实验,该实验首先建立了电子的波状性质。它显示了如何通过量子力学的路径积分公式来预测光子和电子的经典,纯空间有效波理论。根据所描述的路径积分公式的实验应用,严格讨论了哥本哈根会议对波浪力学的标准解释。

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