ON THE LOW SPEED LIMITS OF LORENTZ'S TRANSFORMATION - HOW RELATIVISTIC EFFECTS RETAIN OR VANISH IN ELECTROMAGNETISM

H. Chen, W. E. Sha, Xinyan Dai, Yue Yu
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引用次数: 1

Abstract

This article contains a digest of the theory of electromagnetism and a review of the transformation between inertial frames, especially under low speed limits. The covariant nature of the Maxwell's equations is explained using the conventional language. We show that even under low speed limits, the relativistic effects should not be neglected to get a self-consistent theory of the electromagnetic fields, unless the intrinsic dynamics of these fields has been omitted completely. The quasi-static limits, where the relativistic effects can be partly neglected are also reviewed, to clarify some common misunderstandings and imprecise use of the theory in presence of moving media and other related situations. The discussion presented in this paper provide a clear view of why classical electromagnetic theory is relativistic in its essence.
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论洛伦兹变换的低速极限——相对论效应如何在电磁学中保留或消失
本文简要介绍了电磁学理论,并对惯性系之间的变换,特别是低速下的惯性系之间的变换作了回顾。麦克斯韦方程组的协变性质是用常规语言来解释的。我们证明,即使在低速限制下,除非完全忽略电磁场的内在动力学,否则相对论效应也不应该被忽略,以得到一个自洽的电磁场理论。本文还回顾了准静态极限,其中相对论效应可以部分忽略,以澄清在存在运动介质和其他相关情况下对理论的一些常见误解和不精确使用。本文的讨论清楚地说明了为什么经典电磁理论本质上是相对论性的。
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