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首页> 外文期刊>Annals of Physics >Sources, potentials and fields in Lorenz and Coulomb gauge: Cancellation of instantaneous interactions for moving point charges
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Sources, potentials and fields in Lorenz and Coulomb gauge: Cancellation of instantaneous interactions for moving point charges

机译:洛伦兹和库仑计中的源,势和场:移动点电荷的瞬时相互作用的抵消

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We investigate the coupling of the electromagnetic sources (charge and current densities) to the scalar and vector potentials in classical electrodynamics, using Green function techniques. As is well known, the scalar potential shows an action-at-a-distance behavior in Coulomb gauge. The conundrum generated by the instantaneous interaction has intrigued physicists for a long time. Starting from the differential equations that couple the sources to the potentials, we here show in a concise derivation, using the retarded Green function, how the instantaneous interaction cancels in the calculation of the electric field. The time derivative of a specific additional term in the vector potential, present only in Coulomb gauge, yields a supplementary contribution to the electric field which cancels the gradient of the instantaneous Coulomb gauge scalar potential, as required by gauge invariance. This completely eliminates the contribution of the instantaneous interaction from the electric field. It turns out that a careful formulation of the retarded Green function, inspired by field theory, is required in order to correctly treat boundary terms in partial integrations. Finally, compact integral representations are derived for the Liénard-Wiechert potentials (scalar and vector) in Coulomb gauge which manifestly contain two compensating action-at-a-distance terms.
机译:我们使用格林函数技术研究经典电动力学中电磁源(电荷和电流密度)与标量和矢量电势的耦合。众所周知,标量势在库仑量规中表现出远处动作。瞬时相互作用产生的难题使物理学家很久以来很感兴趣。从将源耦合到电势的微分方程开始,我们在这里使用延迟的格林函数以简洁的推导显示了瞬时相互作用如何在电场计算中消除。仅在库仑计中存在的矢量电势中特定附加项的时间导数对电场产生补充作用,从而消除了瞬变库仑计标量电势的梯度,这是量规不变性所要求的。这完全消除了电场中瞬时相互作用的影响。事实证明,需要以场论为灵感,对延迟的格林函数进行仔细的表述,以便正确处理部分积分中的边界项。最后,推导了库仑量规中Liénard-Wiechert势(标量和矢量)的紧凑积分表示形式,其中显然包含两个距离补偿作用项。

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