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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >Pulsar–black hole binaries as a window on quantum gravity
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Pulsar–black hole binaries as a window on quantum gravity

机译:Pulsar-黑洞二进制文件作为量子重力的窗口

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摘要

Pulsars (PSRs) are some of the most accurate clocks found in nature, while black holes (BHs) offer a unique arena for the study of quantum gravity. As such, PSR–BH binaries provide ideal astrophysical systems for detecting effects of quantum gravity. With the success of aLIGO and the advent of instruments like the Square Kilometer Array (SKA) and Evolved Laser Interferometer Space Antenna (eLISA), the prospects for discovery of such PSR–BH binaries are very promising. We argue that PSR–BH binaries can serve as ready-made testing grounds for proposed resolutions to the BH information paradox. We propose using timing signals from a PSR beam passing through the region near a BH event horizon as a probe of quantum gravitational effects. In particular, we demonstrate that fluctuations of the geometry outside a BH lead to an increase in the measured root-mean-square deviation of arrival times of PSR pulsar traveling near the horizon.
机译:Pulsars(PSR)是自然界中发现的一些最准确的时钟,而黑洞(BHS)为量子重力研究提供独特的舞台。 因此,PSR-BH二进制文件提供了用于检测量子重力的效果的理想天体物理系统。 随着Aligo的成功和Square公里阵列(SKA)和演进激光干涉仪空间天线(ELISA)等乐器的成功,发现此类PSR-BH二进制文件的前景非常有前景。 我们认为PSR-BH二进制文件可以作为建议的BH信息悖论决议的现成测试场所。 我们建议使用来自PSR光束的定时信号通过BH事件地平线附近的区域作为量子重力效应的探针。 特别是,我们证明了BH之外的几何体波动导致PSR Pulsar在地平线附近的PSR脉冲脉的到达时间的升高量增加。

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