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Probing a regular non-minimal Einstein-Yang-Mills black hole with gravitational lensings

机译:探讨具有引力透镜的常规非最小的爱因斯坦 - 阳厂黑洞

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摘要

We investigate weak and strong deflection gravitational lensings of the regular black hole predicted by a non-minimal Einstein–Yang–Mills theory. We find that its weak deflection lensing is the same as a Reissner–Nordstr?m black hole's. Observables in the strong deflection lensing, including the apparent radius of the photon sphere (shadow) as well as the angular separation, brightness difference and time delay between relativistic images, are obtained and analyzed for the supermassive black holes Sgr A* and M87* in the Galactic Center and at the center of M87. We find that only the apparent radii of the photon spheres are within the ability of current technology, whereas there is not enough resolution to distinguish the regular Einstein–Yang–Mills black hole from the Reissner–Nordstr?m one. Meanwhile, caution needs to be paid when the diameter of M87*'s shadow measured by the Event Horizon Telescope is directly taken to constrain such a regular black hole.
机译:我们调查了非最小的爱因斯坦 - 阳厂理论预测的常规黑洞的弱和强的偏转透镜。我们发现它的弱偏转镜头与Reissner-Nordstr?M黑洞相同。在强偏转透镜中的可观察到,包括光子球体(阴影)的表观半径以及相对论图像之间的角度分离,亮度差和时间延迟,并分析超大分料黑洞SGR A *和M87 *银河系中心和M87的中心。我们发现,只有光子球的表观半径在电流技术的能力范围内,而没有足够的分辨率来区分常规爱因斯坦 - 阳厂的黑洞,从Reissner-nordstr?m一个。同时,当事件地平线望远镜测量的M87 *阴影的直径直接被采取时,需要支付小心,直接被视为约束这种普通的黑洞。

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