论文标题

极化引力波的传播

Propagation of polarized gravitational waves

论文作者

Andersson, Lars, Joudioux, Jérémie, Oancea, Marius A., Raj, Ayush

论文摘要

可以使用几何光学近似值分析高频引力波的传播。在较大但有限的频率的情况下,几何光学近似不再是准确的,并且在波长中,一阶的极化依赖性校正通过自旋轨道耦合机制修改了重力波的传播。我们从有效射线方程的第一原理中提出了一个协方差派生,该方程描述了在任意时空的背景下,在波长中以一阶术语传播到了极化引力波的传播。有效的射线方程描述了引力波的重力自旋大厅效应,其形式与描述麦克斯韦方程的光的重力自旋效果的形式相同。

The propagation of high-frequency gravitational waves can be analyzed using the geometrical optics approximation. In the case of large but finite frequencies, the geometrical optics approximation is no longer accurate, and polarization-dependent corrections at first order in wavelength modify the propagation of gravitational waves via a spin-orbit coupling mechanism. We present a covariant derivation from first principles of effective ray equations describing the propagation of polarized gravitational waves, up to first-order terms in wavelength, on arbitrary spacetime backgrounds. The effective ray equations describe a gravitational spin Hall effect for gravitational waves and are of the same form as those describing the gravitational spin Hall effect of light, derived from Maxwell's equations.

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