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首页> 外文期刊>Physics Letters, B. Nuclear Physics and High Energy Physics >Iron line spectroscopy with Einstein-dilaton-Gauss-Bonnet black holes
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Iron line spectroscopy with Einstein-dilaton-Gauss-Bonnet black holes

机译:铁线光谱与爱因斯坦 - Dilaton-Gauss-knnet黑洞

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Einstein-dilaton-Gauss-Bonnet gravity is a well-motivated alternative theory of gravity that emerges naturally from string theory. While black hole solutions have been known in this theory in numerical form for a while, an approximate analytical metric was obtained recently by some of us, which allows for faster and more detailed analysis. Here we test the accuracy of the analytical metric in the context of X-ray reflection spectroscopy. We analyze innermost stable circular orbits (ISCO) and relativistically broadened iron lines and find that both the ISCO and iron lines are determined sufficiently accurately up to the limit of the approximation. We also find that, though the ISCO increases by about 7% as dilaton coupling increases from zero to extremal values, the redshift at ISCO changes by less than 1%. Consequently, the shape of the iron line is much less sensitive to the dilaton charge than expected. (C) 2018 The Authors. Published by Elsevier B.V.
机译:爱因斯坦 - Dilaton-Gauss-knnet重力是一种良好的动力替代重力理论,自然地从弦理论中出现。 虽然在该理论中以数值形式已知黑洞解决方案虽然是一段时间的一段时间,但是我们中的一些人获得了近似的分析度量,这允许更快更详细地分析。 在这里,我们在X射线反射光谱的背景下测试分析度量的准确性。 我们分析了最稳定的圆形轨道(ISCO)和相对宽的铁管线,并发现ISCO和铁线都是充分地确定近似近似的极限。 我们还发现,由于Dilaton耦合从零增加到极值值,ISCO增加了大约7%,而ISCO的红移则变化小于1%。 因此,铁管线的形状远低于稀释电荷的敏感性。 (c)2018年作者。 由elsevier b.v出版。

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