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Moving dipoles and the relativity of simultaneity

机译:移动偶极和同时的相对性

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An observer moving parallel to a current-carrying wire detects an electric field due to the Lorentz transformation directed either toward or away from the wire, depending on the relative motion of observer and current. The accepted interpretation of this situation as viewed from the observer's rest frame is that there is a net linear charge density on the wire. The Lorentz contraction of the separation of fixed ions and charge carriers is different due to their different speeds in the observer's frame. The idea that a net charge exists on a wire in a reference frame moving parallel to the wire leads to the expectation that there is a charge separation seen on a moving current loop, resulting in paradoxes, such as that proposed by Mansuripur. I argue that the apparent charge on a current-carrying wire is due to a misinterpretation of the Lorentz transformation and is a consequence of the relativity of simultaneity. Given this insight, the nature of the fields of moving dipoles and the nature of the magnetization-polarization tensor are investigated.
机译:根据观察者和电流的相对运动,平行于电流承载线移动到电流承载线的观察者检测到电流承载线的电场检测到电场。从观察者休息框架观察的这种情况的接受解释是电线上有净线性充电密度。由于观察者框架中的不同速度,固定离子和电荷载体分离的Lorentz收缩不同。净电荷在与电线平行的参考帧中的导线上存在净电荷的想法导致期望在移动电流回路上看到电荷分离,导致悖论,例如由曼思乌普尔提出的悖论。我认为电流承载线上的表观电荷是由于洛伦兹转化的误解,并且是同时性的相对性的结果。鉴于这种洞察力,研究了移动偶极子场的性质和磁化极化张量的性质。

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