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Fresnel Dragging Explained by a Classical Model of Light Transmission in Optical Media

机译:菲涅耳拖拖通过光学介质中的光传输经典模型解释

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The original mathematical treatment used in the analysis of the Fizeau experiment of 1851, which measured the relative speed of light in a moving medium, assumes that light travels through the water in a smooth continuous flow, at a speed less than the speed of light in a vacuum (relative to the water). Thus, it assumes that the water’s velocity vector can simply be added to that of the light. However, light is transmitted through optical media, such as water, by a continuous process of charge excitation (semi-absorption) and re-emission by the water molecules; but travels between them at the full speed of light (in a vacuum). Thus, the mathematics describing the process of Fresnel dragging must be formulated differently and can then be explained by classical physics, allowing the entire process to be fully visualized.
机译:用于分析1851的FIZEAT实验的原始数学处理,其测量了移动介质中的光相对速度,假设光在光滑的连续流动中通过水,以小于光速的速度 真空(相对于水)。 因此,它假设水的速度向量可以简单地添加到光的速度。 然而,光通过光学介质(例如水)通过连续的电荷激发(半吸收)和水分子重新发射的光学介质传播; 但是在整个光速(真空中)之间行驶。 因此,必须以不同的方式配制描述菲涅耳拖拉过程的数学,然后可以通过经典物理学解释,允许整个过程完全可视化。

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