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Second-order Boltzmann equation: Gauge dependence and gauge invariance

机译:二阶玻耳兹曼方程:量规相关性和量规不变性

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摘要

In the context of cosmological perturbation theory, we derive the second-order Boltzmann equation describing the evolution of the distribution function of radiation without a specific gauge choice. The essential steps in deriving the Boltzmann equation are revisited and extended given this more general framework: (i) the polarization of light is incorporated in this formalism by using a tensor-valued distribution function; (ii) the importance of a choice of the tetrad field to define the local inertial frame in the description of the distribution function is emphasized; (iii) we perform a separation between temperature and spectral distortion, both for the intensity and polarization for the first time; (iv) the gauge dependence of all perturbed quantities that enter the Boltzmann equation is derived, and this enables us to check the correctness of the perturbed Boltzmann equation by explicitly showing its gauge-invariance for both intensity and polarization. We finally discuss several implications of the gauge dependence for the observed temperature.
机译:在宇宙学扰动理论的背景下,我们推导了二阶玻耳兹曼方程,该方程描述了没有特定量规选择的辐射分布函数的演变。在这个更一般的框架下,重新讨论和扩展了推导玻尔兹曼方程的基本步骤:(i)通过使用张量值分布函数将光的偏振合并到这种形式主义中; (ii)在分配函数的描述中强调了选择四元磁场来定义局部惯性系的重要性; (iii)我们首次在温度和光谱失真之间进行强度和极化的分离; (iv)推导了进入Boltzmann方程的所有扰动量的尺度相关性,这使我们能够通过明确显示强度和极化的尺度不变性来检查扰动的Boltzmann方程的正确性。最后,我们讨论了表观依赖性对所观察温度的一些影响。

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