Optical Aspect of Cosmological Black Holes in Einstein-Maxwell-Dilaton Theory

Hajar Belmahi, Amin Mohamed Rbah
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Abstract

Motivated by string theory scenarios, we study the optical aspect of AdS black holes in Einstein-Maxwell-dilaton theory. Concretely, we investigate and examine the shadows and the deflection angle of light rays by such cosmological black holes. Concerning the shadows, we first deal with the non-rotating solutions. In particular, we obtain perfect circular shadows where their sizes are controlled by the involved parameter including the charge and the cosmological constant. Combining the Newman-Janis formalism and the Hamilton-Jacobi algorithm, we approach the rotating black hole solutions using real curves. Among others, we observe that the size and shape shadows depend on the rotating parameter and the remaining ones. To make contact with Event Horizon Telescope observational data, we show that certain constrains should be imposed on such parameters. Then, we study the behaviors of the light rays near to such cosmological black holes by computing the deflection angle in terms of Einstein-Maxwell-dilaton theory parameters. Specifically, we reveal that the effect of the cosmological constant on the deflection angle changes as the coupling between the black hole parameters is adjusted. When the rotation parameter is introduced, we observe this effect becomes similar to that of the cosmological constant in ordinary AdS black holes.
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爱因斯坦-麦克斯韦尔-迪拉顿理论中宇宙学黑洞的光学方面
受弦理论情景的启发,我们研究了爱因斯坦-麦克斯韦-迪拉顿理论中 AdS 黑洞的光学方面。具体来说,我们研究和探讨了这种宇宙学黑洞的阴影和光线的偏转角。关于阴影,我们首先处理非旋转解。特别是,我们得到了完美的圆形阴影,其大小由包括电荷和宇宙常数在内的相关参数控制。结合纽曼-杰尼斯形式主义和汉密尔顿-雅各比算法,我们利用真实曲线接近旋转黑洞解。其中,我们观察到阴影的大小和形状取决于旋转参数和其余参数。为了与事件视界望远镜(EventHorizon Telescope)的观测数据相联系,我们证明应该对这些参数施加一定的约束。然后,我们通过计算爱因斯坦-麦克斯韦-迪拉顿理论参数的偏转角,研究了靠近这类宇宙学黑洞的光线的行为。具体来说,我们发现宇宙常数对偏转角的影响随着黑洞参数之间耦合的调整而变化。当引入旋转参数时,我们观察到这种影响变得与普通 AdS 黑洞中宇宙常数的影响相似。
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