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The relativistic Doppler effect: when a zero-frequency shift or a red shift exists for sources approaching the observer

机译:相对论多普勒效应:当信源接近观察者时存在零频移或红移

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摘要

It is shown without making use of Lorentz transformation that there exists a phenomenon of relativistic zero-frequency shift in Doppler effect for a plane wave in free space, observed in two inertial frames of relative motion, and the zero shift takes place at a maximum aberration of light. When it is applied to analysis of a moving point light source, two unconventional physical implications result: (1) a light source, when it is approaching (moving closer to) the observer, may cause a red shift; (2) a zero-frequency-shift observation does not necessarily mean that the light source is not moving closer, and in contrast, the light source may be moving closer to the observer at a high speed. This fundamental result of special relativity may provide an alternative way to experimentally examine the principle of relativity, and might have a significant application in astrophysics.
机译:在不利用洛伦兹变换的情况下,在两个相对运动的惯性系中观察到,自由空间中的平面波在多普勒效应中存在相对论的零频偏移现象,并且零偏移发生在最大像差处。光。当将其应用于移动点光源的分析时,会产生两个非常规的物理影响:(1)当光源靠近(靠近)观察者时,可能会引起红移; (2)零频移观察并不一定意味着光源没有移近,相反,光源可能正在高速移近观察者。狭义相对论的这一基本结果可能为实验检验相对论原理提供一种替代方法,并且可能在天体物理学中有重要的应用。

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