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首页> 外文期刊>Physics letters >Thin accretion disk signatures of scalarized black holes in Einstein-scalar-Gauss-Bonnet gravity
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Thin accretion disk signatures of scalarized black holes in Einstein-scalar-Gauss-Bonnet gravity

机译:薄的吸积磁盘签名在爱因斯坦 - 标量 - 高斯 - 高声引擎重力中的标定黑洞

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Einstein-scalar-Gauss-Bonnet gravity has recently been known to exhibit spontaneous scalarization. In the presence of the Gauss-Bonnet term the no-hair theorem can be evaded and novel black hole solutions with non-trivial scalar fields have been found besides the general relativistic solutions. In this paper, we aim to investigate the possibility of observationally testing Einstein-scalar-Gauss-Bonnet gravity using thin accretion disk properties around such scalarized black holes. Using the Novikov-Thorne model, we numerically calculate the electromagnetic flux, temperature distribution, emission spectrum, innermost stable circular orbits and energy conversion efficiency of accretion disks around such black holes and compare the results with the standard general relativistic Schwarzschild solution. We find that the accretion disks around scalarized black holes are hotter and more luminous than in general relativity.
机译:最近已知爱因斯坦 - 标量 - 高斯 - 高声引擎重力表现出自发的标准化。在高斯 - 发动机帽期间的存在下,除了一般相对论的解决方案之外,还发现了除了非普通标量场的新型黑洞解决方案。在本文中,我们的目标是使用围绕这种标定的黑洞围绕这种标定的黑洞进行薄的吸积磁盘属性来研究观测到爱因斯坦标量-Gauss-knnet重力的可能性。使用NoviCov-Thorne模型,我们计算了电磁通量,温度分布,发射光谱,最内稳定的圆形轨道和围绕这种黑洞的吸积磁盘的能量转换效率,并将结果与​​标准的普通相对论施瓦茨柴尔氏溶液进行比较。我们发现,标定黑洞周围的吸积磁盘比一般相对性更热。

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