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基于脉冲星计时阵列在平方公里阵列时代搜寻超大质量黑洞双星

Pulsar Timing Array Based Search for Supermassive Black Hole Binaries in the Square Kilometer Array Era.

作者信息

Wang Yan, Mohanty Soumya D

机构信息

School of Physics, Huazhong University of Science and Technology, 1037 Luoyu Road, Wuhan, Hubei Province 430074, China and MOE Key Laboratory of Fundamental Physical Quantities Measurements, 1037 Luoyu Road, Wuhan, Hubei Province 430074, China.

Department of Physics, The University of Texas Rio Grande Valley, One West University Boulevard, Brownsville, Texas 78520, USA and Center for Gravitational Wave Astronomy, The University of Texas Rio Grande Valley, One West University Boulevard, Brownsville, Texas 78520, USA.

出版信息

Phys Rev Lett. 2017 Apr 14;118(15):151104. doi: 10.1103/PhysRevLett.118.151104. Epub 2017 Apr 12.

Abstract

The advent of next generation radio telescope facilities, such as the Square Kilometer Array (SKA), will usher in an era where a pulsar timing array (PTA) based search for gravitational waves (GWs) will be able to use hundreds of well timed millisecond pulsars rather than the few dozens in existing PTAs. A realistic assessment of the performance of such an extremely large PTA must take into account the data analysis challenge posed by an exponential increase in the parameter space volume due to the large number of so-called pulsar phase parameters. We address this problem and present such an assessment for isolated supermassive black hole binary (SMBHB) searches using a SKA era PTA containing 10^{3} pulsars. We find that an all-sky search will be able to confidently detect nonevolving sources with a redshifted chirp mass of 10^{10}  M_{⊙} out to a redshift of about 28 (corresponding to a rest-frame chirp mass of 3.4×10^{8}  M_{⊙}). We discuss the important implications that the large distance reach of a SKA era PTA has on GW observations from optically identified SMBHB candidates. If no SMBHB detections occur, a highly unlikely scenario in the light of our results, the sky-averaged upper limit on strain amplitude will be improved by about 3 orders of magnitude over existing limits.

摘要

下一代射电望远镜设施的出现,比如平方公里阵列(SKA),将开启一个新纪元,在这个时代,基于脉冲星计时阵列(PTA)的引力波(GW)搜索将能够使用数百颗计时精确的毫秒脉冲星,而不是现有PTA中的几十颗。要对如此超大型PTA的性能进行实际评估,必须考虑到由于大量所谓的脉冲星相位参数导致参数空间体积呈指数增长所带来的数据分析挑战。我们解决了这个问题,并针对使用包含10³颗脉冲星的SKA时代PTA搜索孤立超大质量黑洞双星(SMBHB)给出了这样的评估。我们发现,全天空搜索将能够可靠地探测到红移啁啾质量为10¹⁰ M⊙、红移约为28(对应静止系啁啾质量为3.4×10⁸ M⊙)的非演化源。我们讨论了SKA时代PTA的远距离探测能力对来自光学识别的SMBHB候选体的引力波观测的重要影响。如果没有探测到SMBHB(根据我们的结果这是极不可能的情况),应变幅度的全天空平均上限将比现有上限提高约3个数量级。

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