首页> 外文会议>PIERS 2011 Marrakesh;Progress in electromagnetics research symposium >Permittivity of Vacuum and Speed of Light in Vacuum which Vary with Relative Speeds of Media in Uniform Rectilinear Motion with Respect to Each Other
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Permittivity of Vacuum and Speed of Light in Vacuum which Vary with Relative Speeds of Media in Uniform Rectilinear Motion with Respect to Each Other

机译:真空的介电常数和真空中的光速,随匀速直线运动中的介质的相对速度而变化

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Having determined in a series of articles that the principle of constancy of speed of light in vacuum of the Special Relativity Theory is false and has to be put aside because it cannot account for the loss in one of the two media which are in uniform rectilinear motion with respect to each other, it has become necessary to use different speeds of light in vacuum for different Galilean reference systems. In this paper this is demonstrated again by obtaining of a relation that relates the speed of light in vacuum c, constitutive parameters of the medium, frequency and the speeds of two media in uniform rectilinear motion with respect to each other. This in turn necessitates the revision of the concept of the permittivity of vacuum for different Galilean reference systems. Therefore first we determine the speed of light in vacuum for one of the two moving media, and define the permittivity of vacuum for that medium using the speed of light in vacuum found for that medium. We assume the permeability of vacuum is an invariant quantity given as μ_0 = 4π × 10~(-7) [H/m]. The same procedure is repeated also for the second medium. The two media which are in relative motion with respect to each other and which are taken up in this paper, are a simple medium with loss and a perfectly conducting medium filling a half space. Their interface is an infinite plane perpendicular to the direction of the uniform rectilinear motion of the second medium which is constituted of the perfectly conducting half space. For simplicity we have assumed the incident wave that impinges on the interface has a wave vector that makes an angle of θ = π/2 with the direction of the velocity of the moving medium and hence we can make use of the time dilation formula to transform the frequencies between the Galilean reference systems. The permittivity of vacuum and speed of light in vacuum results obtained are particular to this electromagnetic system.
机译:在一系列文章中确定了狭义相对论在真空中光速恒定的原理是错误的,因此不得不将其搁置一旁,因为它不能解释均匀直线运动的两种介质之一的损耗。相对于彼此,对于不同的伽利略参考系统,必须在真空中使用不同的光速。在本文中,这通过获得以下关系再次证明,该关系将真空中的光速c,介质的本构参数,频率以及两种介质在均匀直线运动中彼此的速度相关联。这进而需要修改不同伽利略参考系统的真空介电常数的概念。因此,首先我们确定两种移动介质之一的真空中的光速,并使用对该介质求出的真空中的光速来定义该介质的真空介电常数。我们假设真空的渗透率是一个不变的量,给定为μ_0=4π×10〜(-7)[H / m]。对于第二种介质,也重复相同的过程。本文中涉及的两种相互相对运动的介质是一种简单的有损耗的介质,而一种导电性能良好的介质则填充了一半的空间。它们的界面是一个垂直于第二介质匀速直线运动方向的无限平面,该平面由完全传导的半空间组成。为简单起见,我们假设入射在界面上的入射波的波矢与移动介质的速度方向成θ=π/ 2的角度,因此我们可以利用时间膨胀公式进行变换伽利略参考系统之间的频率。真空的介电常数和真空中的光速结果是该电磁系统特有的。

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