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首页> 外文期刊>Journal of Cosmology and Astroparticle Physics >Strong gravitational lensing for the photons coupled to Weyl tensor in a Schwarzschild black hole spacetime
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Strong gravitational lensing for the photons coupled to Weyl tensor in a Schwarzschild black hole spacetime

机译:Schwarzschild黑洞时空中与Weyl张量耦合的光子的强引力透镜

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We have investigated the strong gravitational lensing for the photons coupled to Weyl tensor in a Schwarzschild black hole spacetime. We find that in the four-dimensional black hole spacetime the equation of motion of the photons depends not only on the coupling between photon and Weyl tensor, but also on the polarization direction of the photons. It is quite different from that in the case of the usual photon without coupling to Weyl tensor in which the equation of motion is independent of the polarization of the photon. Moreover, we find that the coupling and the polarization direction modify the properties of the photon sphere, the deflection angle, the coefficients in strong field lensing, and the observational gravitational lensing variables. Combining with the supermassive central object in our Galaxy, we estimated three observables in the strong gravitational lensing for the photons coupled to Weyl tensor.
机译:我们研究了在Schwarzschild黑洞时空中耦合到Weyl张量的光子的强引力透镜。我们发现在四维黑洞时空中,光子的运动方程不仅取决于光子与韦尔张量之间的耦合,还取决于光子的极化方向。这与没有耦合到Weyl张量的普通光子的情况大不相同,在普通情况下,运动方程与光子的偏振无关。此外,我们发现耦合和偏振方向会改变光子球的属性,偏转角,强场透镜的系数以及重力观测透镜的变量。结合银河系中的超大质量中心物体,我们估计了与Weyl张量耦合的光子在强引力透镜中的三个观测值。

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