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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:在爱因斯坦 - Dilaton-Gauss-knnetigrity中扰动的黑洞 - 稳定性,旋转和引力波发射

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摘要

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:被扭曲的黑洞发出的引力波 - 例如由两个中子恒星或黑洞的聚结会产生的波浪 - 不仅承受了关于相应的时空的信息,而且涉及涉及潜在的重力理论。虽然一般相对论仍然是最简单,最优雅和可行的引力理论,但是具有通用和强大的争论,表明它不是引力宇宙的最终描述。在这里,我们专注于一般相对论的特别吸引力,这通过增加曲率下的二阶术语来纠正爱因斯坦的理论:拓扑高斯-NET不变,耦合到Dilaton。我们在本理论中研究了黑洞的引力波发射,(i)找到了强烈的证据,即黑洞是线性(模式)对轴向和极性扰动的稳定,(ii)讨论了在此期间可以兴奋的黑洞的Quasinormal模式如何令人兴奋涉及黑洞的碰撞,最后(iii)表明,具有大信噪比的未来振荡检测将改善理论的耦合参数上的电流约束。

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  • 来源
    《Physical review, D》 |2016年第1期|共15页
  • 作者单位

    Carl von Ossietzky Univ Oldenburg Dept Phys D-26111 Oldenburg Germany;

    Univ Lisbon Inst Super Tecn Dept Fis CENTRA Ave Rovisco Pais 1 P-1049 Lisbon Portugal;

    Univ Lisbon Inst Super Tecn Dept Fis CENTRA Ave Rovisco Pais 1 P-1049 Lisbon Portugal;

    Sapienza Univ Roma Dipartimento Fis Piazzale Aldo Moro 5 I-00185 Rome Italy;

    Sapienza Univ Roma Dipartimento Fis Piazzale Aldo Moro 5 I-00185 Rome Italy;

    Jacobs Univ Dept Phys &

    Earth Sci D-28759 Bremen Germany;

    Carl von Ossietzky Univ Oldenburg Dept Phys D-26111 Oldenburg Germany;

    Univ Lisbon Inst Super Tecn Dept Fis CENTRA Ave Rovisco Pais 1 P-1049 Lisbon Portugal;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 粒子物理学;场论;
  • 关键词

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