Methodological notes on the gauge invariance in the treatment of waves and oscillations in plasmas $via$ the Einstein-Vlasov-Maxwell system: Fundamental equations

Lucas Bourscheidt, Fernando Haas
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Abstract

The theory of gauge transformations in linearized gravitation is investigated. After a brief discussion of the fundamentals of the kinetic theory in curved spacetime, the Einstein-Vlasov-Maxwell system of equations in terms of gauge invariant quantities is established without neglecting the equations of motion associated with the dynamics of the non-radiative components of the metric tensor. The established theory is applied to a non-collisional electron-positron plasma, leading to a dispersion relation for gravitational waves in this model system. The problem of Landau damping is addressed and some attention is given to the issue of the energy exchanges between the plasma and the gravitational wave. In a future paper, a more complete set of approximate dispersion relations for waves and oscillations in plasmas will be presented, including the dynamics of non-radiative components of the metric tensor, with special attention to the problems of the Landau damping and of the energy exchanges between matter, the electromagnetic field and the gravitational field.
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关于通过爱因斯坦-弗拉索夫-麦克斯韦系统处理等离子体中的波和振荡的规整不变性的方法论说明:基本方程
研究了线性化引力中的轨距变换理论。在简要讨论了弯曲时空中运动理论的基本原理之后,在不忽略与度量张量的非辐射分量的动力学相关的运动方程的情况下,建立了关于量规不变量的爱因斯坦-弗拉索夫-麦克斯韦方程组。将所建立的理论应用于非碰撞电子-正电子等离子体,得出了该模型系统中引力波的色散关系。兰道阻尼问题得到了解决,等离子体与引力波之间的能量交换问题也得到了关注。在今后的论文中,将提出一套更完整的等离子体中波和振荡的近似频散关系,包括度量张量的非辐射分量的动力学,并特别关注朗道阻尼问题以及物质、电磁场和引力场之间的能量交换问题。
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