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Simulation of the gravitational wave frequency distribution of neutron star–black hole mergers

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【作者】 张见微张承民李菂崔翔翰杨伍明王德华杨佚沿毕少兰张先飞

【Author】 Jianwei Zhang;Chengmin Zhang;Di Li;Xianghan Cui;Wuming Yang;Dehua Wang;Yiyan Yang;Shaolan Bi;Xianfei Zhang;CAS Key Laboratory of FAST, National Astronomical Observatories, Chinese Academy of Sciences;University of Chinese Academy of Sciences;NAOC-UKZN Computational Astrophysics Centre, University of KwaZulu-Natal;Department of Astronomy, Beijing Normal University;School of Physics and Electronic Science, Guizhou Normal University;School of Physics and Electronic Science, Guizhou Education University;

【通讯作者】 张承民;李菂;

【机构】 CAS Key Laboratory of FAST, National Astronomical Observatories, Chinese Academy of SciencesUniversity of Chinese Academy of SciencesNAOC-UKZN Computational Astrophysics Centre, University of KwaZulu-NatalDepartment of Astronomy, Beijing Normal UniversitySchool of Physics and Electronic Science, Guizhou Normal UniversitySchool of Physics and Electronic Science, Guizhou Education University

【摘要】 LIGO-Virgo has observed the gravitational waves(GWs) from the coalescence of binary black hole(BBH) and binary neutron star(BNS) during O1 and O2, and the ones from NS-BH are expected to be hunted in the operating O3 run. The population properties and mass distribution of NS-BH mergers are poorly understood now, thus researchers simulated their chirp mass(M) distribution by a synthetic model, in which the BHs and NSs were inferred by LIGO-Virgo(O1/O2), and obtained the values in the range of 2.1 M_⊙ < M < 7.3 M_⊙. In this paper, we further simulate the GW frequency( fGW)distribution of NS-BH mergers by the above-stated synthetic model, with a basic binary system model through the Monte Carlo method. Our results predict that the median with 90% credible intervals is 165+475-64 Hz in the case of Schwarzschild BH when the system just before merger, and this GW frequency is expected to increase several times in the merger stage,which is lying in the frequency band of LIGO-Virgo, i.e., about 15 Hz to a few kHz. Our results provide an important reference for hunting the NS-BH mergers by the on-going O3 run of LIGO-Virgo.

【Abstract】 LIGO-Virgo has observed the gravitational waves(GWs) from the coalescence of binary black hole(BBH) and binary neutron star(BNS) during O1 and O2, and the ones from NS-BH are expected to be hunted in the operating O3 run. The population properties and mass distribution of NS-BH mergers are poorly understood now, thus researchers simulated their chirp mass(M) distribution by a synthetic model, in which the BHs and NSs were inferred by LIGO-Virgo(O1/O2), and obtained the values in the range of 2.1 M_⊙ < M < 7.3 M_⊙. In this paper, we further simulate the GW frequency( fGW)distribution of NS-BH mergers by the above-stated synthetic model, with a basic binary system model through the Monte Carlo method. Our results predict that the median with 90% credible intervals is 165+475-64 Hz in the case of Schwarzschild BH when the system just before merger, and this GW frequency is expected to increase several times in the merger stage,which is lying in the frequency band of LIGO-Virgo, i.e., about 15 Hz to a few kHz. Our results provide an important reference for hunting the NS-BH mergers by the on-going O3 run of LIGO-Virgo.

【基金】 Project supported by the National Natural Science Foundation of China (Grant Nos. 11988101, 11773005, U2031203, U1631236, 11703001, U1731238,U1938117, 11725313, and 11721303);the International Partnership Program of Chinese Academy of Sciences (Grant No. 114A11KYSB20160008);the National Key R&D Program of China (Grant No. 2016YFA0400702);the Subsidy Project of the National Natural Science Foundation of China (Grant No. 2021GZJ006)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2021年12期
  • 【分类号】P142.84
  • 【下载频次】27
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