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首页> 外文期刊>Physical review, D >Perturbed black holes in Einstein-dilaton-Gauss-Bonnet gravity: Stability, ringdown, and gravitational-wave emission
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Perturbed black holes in Einstein-dilaton-Gauss-Bonnet gravity: Stability, ringdown, and gravitational-wave emission

机译:爱因斯坦-迪拉顿-高斯-贝内特引力中的扰动黑洞:稳定性,振铃和引力波发射

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Gravitational waves emitted by distorted black holes—such as those arising from the coalescence of two neutron stars or black holes—carry not only information about the corresponding spacetime but also about the underlying theory of gravity. Although general relativity remains the simplest, most elegant, and viable theory of gravitation, there are generic and robust arguments indicating that it is not the ultimate description of the gravitational universe. Here, we focus on a particularly appealing extension of general relativity, which corrects Einstein’s theory through the addition of terms which are second order in curvature: the topological Gauss-Bonnet invariant coupled to a dilaton. We study gravitational-wave emission from black holes in this theory and (i)?find strong evidence that black holes are linearly (mode) stable against both axial and polar perturbations, (ii)?discuss how the quasinormal modes of black holes can be excited during collisions involving black holes, and finally (iii)?show that future ringdown detections with a large signal-to-noise ratio would improve current constraints on the coupling parameter of the theory.
机译:由扭曲的黑洞发出的引力波,例如由两个中子星或黑洞合并产生的引力波,不仅携带有关相应时空的信息,而且还携带有关引力理论的信息。尽管广义相对论仍然是最简单,最优雅,最可行的万有引力理论,但有普遍的和有力的论据表明它不是万有引力宇宙的最终描述。在这里,我们将重点放在广义相对论的一个特别吸引人的扩展上,该扩展通过添加曲率二阶的项来修正爱因斯坦的理论:拓扑高斯-邦纳特不变式与扩张子耦合。我们在该理论中研究了黑洞的引力波发射,并且(i)找到了有力的证据,证明黑洞对轴向和极性扰动都具有线性(众数)稳定,(ii)讨论了黑洞的准正态模态如何在涉及黑洞的碰撞中被激发,最后(iii)表明未来的具有大信噪比的振铃检测将改善电流对理论耦合参数的约束。

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