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The radiation continuum model of light and the Galilean invariance of Maxwell's equations

机译:光的辐射连续模型和麦克斯韦方程的伽利略不变性

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The original basis for the Lorentz transformations, and thus special relativity, was the assumption that the observed velocity of interaction of light with matter represents a unique velocity of the electromagnetic wave. This arbitrary decision is not borne out by Maxwell's theories or by any test that might prove that EM energy actually travels in a continuum of velocities. The second postulate as stated by Einstein does not deserve the status of a postulate, as it is at once overly restrictive and ultimately phenomenological-the nature of c is based on experimental measurement rather than on analysis of first principles. The radiation continuum model's (RCM) modified second postulate, however, says nothing about the actual propagation of EM energy, but only of the relative speed with which it must interact with matter to be detected. Utilizing this modified light principle we obtain an intuitive Galilean form invariance for Maxwell's equations. RCM places no upper limit on attainable velocities, and allows for the possibility of communications between humans or particles at speeds far in excess of c. This precludes many of the compatibility problems between the highly successful quantum mechanics and relativity theory.
机译:洛伦兹变换以及由此而来的相对论的原始基础是这样一个假设,即观察到的光与物质相互作用的速度代表电磁波的独特速度。麦克斯韦的理论或任何可能证明电磁能量实际上以连续速度传播的测试都不能证明这一任意决定。爱因斯坦提出的第二种假设不配以一种假设的地位,因为它立即具有过分的局限性,并且最终是现象学上的-c的本质是基于实验测量而不是基于对第一性原理的分析。但是,辐射连续体模型(RCM)的修改后的第二个假设并没有说明EM能量的实际传播,而只是说明了它必须与要检测的物质相互作用的相对速度。利用这种修改后的光原理,我们可以获得麦克斯韦方程组的直观伽利略形式不变性。 RCM对可达到的速度没有上限,并且允许人或粒子之间以远远超过c的速度进行通信。这排除了在非常成功的量子力学和相对论之间的许多相容性问题。

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