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Energetic and optical consequences in isotropic curved space and time

机译:各向同性弯曲空间和时间中的能量和光学影响

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In numerous media (nonlinear material, moving dielectrics, superfluids, Bose-Einstein condensates, and others) and different in vacuo states (nontrivial quantum electrodynamics in vacuo) matter or vacuum fluctuations modify light propagation in the same way that an effective gravitational field does. This nonlinear optical behavior affects not only the energy paths but also the form of the energetic invariant. However, such a function plays a key role when we try to develop a phenomenological kinetic theory for participating media. I analyze how modification of light propagation transforms the energetic invariant and modifies its transport inside a participating medium. A semianalytical method is presented to solve the radiative transfer equation for any spherically symmetric problems.
机译:在许多介质中(非线性材料,运动的电介质,超流体,玻色-爱因斯坦凝聚物等),在真空状态下(真空中的非平凡量子电动力学)不同,物质或真空涨落以与有效引力场相同的方式改变光的传播。这种非线性光学行为不仅影响能量路径,而且影响高能不变量的形式。但是,当我们尝试为参与媒体开发现象动力学理论时,这种功能起着关键作用。我分析了光传播的修改如何变换高能不变量并修改其在参与介质内部的传输。提出了一种半解析方法来求解任何球对称问题的辐射传递方程。

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