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Bouncing black holes in quantum gravity and the Fermi gamma-ray excess

机译:在量子重力和费米γ射线过度弹出黑洞

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Non-perturbative quantum-gravity effects can change the fate of black holes and make them bounce in a time scale shorter than the Hawking evaporation time. In this article, we show that this hypothesis can account for the GeV excess observed from the galactic center by the Fermi satellite. By carefully taking into account the secondary component due to the decay of unstable hadrons, we show that the model is fully self-consistent. This phenomenon presents a specific redshift-dependence that could allow to distinguish it from other astrophysical phenomena possibly contributing to the GeV excess. (C) 2017 The Author(s). Published by Elsevier B.V.
机译:非扰动量子 - 重力效应可以改变黑洞的命运,使它们在比霍克宁蒸发时间短的时间尺度的反弹。 在本文中,我们表明,这一假设可以占Fermi卫星从银河系中观察到的GEV。 由于仔细考虑到由于不稳定的强盗衰减而次要的分量,我们表明该模型是完全自我一致的。 这种现象具有特定的红移 - 依赖性,可能允许将其与可能导致GEV多余的其他天体物理现象区分开来。 (c)2017年作者。 由elsevier b.v出版。

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