Point-Charge Models and Averages for Electromagnetic Quantities Considered in Two Relativistic Inertial Frames

Timothy H. Boyer
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Abstract

Electromagnetic quantities at a spacetime point have tensor Lorentz transformations between relatively-moving inertial frames. However, since the Lorentz transformation of time between inertial frames depends upon both the time and space coordinates, averages of electrodynamic quantities at a single time will in general depend upon the inertial frame, and will differ between inertial frames. Here we illustrate how the use of continuous charge and current distributions rather than point-charge distributions can lead to physically mystifying and even inaccurate results for electromagnetic quantities and physical phenomena. The discrepancy noted between the average electric field values in different inertial frames is particularly striking because it is first order in the relative velocity between the frames.
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两个相对论惯性系中考虑的电磁量的点电荷模型和平均值
在相对运动的惯性框架之间,时空点上的电磁量会发生张量洛伦兹变换。然而,由于惯性框架之间的时间洛伦兹变换取决于时间坐标和空间坐标,因此单个时间的电动量平均值一般取决于惯性框架,并且在不同惯性框架之间会有所不同。在此,我们将说明使用连续电荷和电流分布而非点电荷分布如何会导致电磁量和物理现象的物理神秘性,甚至导致不准确的结果。不同惯性框架下的平均电场值之间的差异尤为突出,因为它是框架间相对速度的一阶。
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