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Direct experimental demonstration of the second special relativity postulate: the speed of light is independent of the speed of the source

机译:第二种狭义相对论的直接实验证明:光速与光源的速度无关

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摘要

Special relativity is undoubtedly the most famous physical theory. The popularity of the special theory of relativity (STR) is related to the simplicity of its main principles, the imagination-staggering paradoxicality of the conclusions, and its key position in 20th-century physics. Special relativity has brought unprecedented fame to Albert Einstein, and it is this fame that became one of the reasons for incessant attempts to revise the theory. Among professional physicists, the debates around STR ended more than 50 years ago. A quotation from Wikipedia: "All the experimental data of the high-energy physics, nuclear physics, spectroscopy, astrophysics, electrodynamics, and other fields of physics, within the experimental errors, perfectly agree with the STR. In particular, in quantum electrodynamics (unification of the STR, quantum theory and Maxwell equations), the value of the anomalous magnetic moment of electron coincides with theoretical calculations to within 10-9."
机译:狭义相对论无疑是最著名的物理理论。狭义相对论(STR)的流行与它的主要原理的简单,结论的想象力-惊人的自相矛盾性及其在20世纪物理学中的关键地位有关。狭义相对论给爱因斯坦带来了空前的名声,正是这种名声成为不断修改理论的原因之一。在专业物理学家中,围绕STR的辩论已于50多年前结束。维基百科的一句名言:“在实验误差范围内,高能物理,核物理,光谱学,天体物理学,电动力学和其他物理领域的所有实验数据与STR完全吻合。特别是在量子电动力学中(结合STR,量子理论和麦克斯韦方程式,电子异常磁矩的值与理论计算值相符,在10-9之内。”

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