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首页> 外文期刊>The Astrophysical Journal. Letters >Tests of Gravity Theories Using Supermassive Black Holes
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Tests of Gravity Theories Using Supermassive Black Holes

机译:使用超大性黑洞的重力理论测试

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Scalar-tensor theories of gravity generally violate the strong equivalence principle, namely that compact objects have a suppressed coupling to the scalar force, which causes them to fall slower. A black hole is the extreme example where such a coupling vanishes, i.e., black holes have no scalar hair. We explore observational scenarios for detecting strong equivalence principle violation, focusing on galileon gravity as an example. For galaxies infalling toward galaxy clusters, the supermassive black hole can be offset from the galaxy center away from the direction of the cluster. Well-resolved images of galaxies around nearby clusters can therefore be used to identify the displaced black hole via the star cluster bound to it. We show that this signal is accessible with imaging surveys, both ongoing ones such as the Dark Energy Survey and future ground-and space-based surveys. Already, the observation of the central black hole in M87 places new constraints on the galileon parameters, which we present here. O(1) matter couplings are disfavored for a large region of the parameter space. We also find a novel phenomenon whereby the black hole can escape the galaxy completely in less than one billion years.
机译:标量强的重力通常违反强劲的等价原理,即紧凑型物体具有抑制耦合到标量力,这导致它们跌幅较慢。黑洞是极端的例子,其中这种耦合消失,即黑洞没有标量的头发。我们探索了检测强大的等价原则违规的观测情况,重点是伽利索重力作为一个例子。对于朝向星系簇的无线电,超大分离的黑洞可以从星系中心偏离簇的方向。因此,附近簇周围的星系的良好图像可用于通过与其绑定的星形集群识别所流离失所的黑洞。我们表明该信号可与成像调查一起访问,这两个都是诸如暗能量调查和未来地面和基于空间的调查的持续存在。已经,M87中的中央黑洞的观察为我们在这里呈现的伽利索参数上的新约束。 O(1)物质耦合不适用于参数空间的大区域。我们还发现了一种新颖现象,黑洞可以在不到10亿年内完全逃脱银河系。

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