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Gravitational lensing of gravitational waves: Rotation of polarization plane

机译:引力波的引力透镜:偏振平面的旋转

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摘要

Similar to the light, gravitational waves traveling in multiple paths may arrive at the same location if there is a gravitational lens on their way. Apart from the magnification of the amplitudes and the time delay between the gravitational wave rays, gravitational lensing also rotates their polarization planes and causes the gravitational wave Faraday rotation. The effect of the Faraday rotation is weak and can be ignored. The rotation of the polarization plane results in the changes in the antenna pattern function, which describes the response of the detector to its relative orientation to the gravitational wave. These effects are all reflected in the strain, the signal registered by the interferometers. The gravitational wave rays in various directions stimulate different strains, mainly due to different magnification factors, the phases and the rotation of the polarization plane. The phase difference mainly comes from the time delay. Moreover, the rotation of the polarization plane seemingly introduces the apparent vector polarizations, when these strains are compared with each other. Because of the smallness of the deflection angles, the effect of the rotation is also negligible.
机译:与光类似,如果在其途中存在重力透镜,则在多个路径中行进的重力波可以到达相同的位置。除了幅度的放大率和引力波射线之间的时间延迟之外,重力透镜也旋转它们的偏振平面并导致重力波法拉第旋转。法拉第旋转的效果较弱,可以忽略。偏振平面的旋转导致天线图案函数的变化,其描述了检测器与其相对取向到引力波的响应。这些效果全部反映在应变中,通过干涉仪登记的信号。各种方向上的引力波射线刺激不同的菌株,主要是由于不同的放大因子,相位和偏振平面的旋转。相位差主要来自时间延迟。此外,当这些菌株彼此比较时,偏振平面的旋转似乎引入了表观载体偏振。由于偏转角度的小,旋转的效果也可以忽略不计。

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