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The gravitational wave emission of double white dwarf coalescences

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【作者】 邹泽城周小龙黄永锋

【Author】 Ze-Cheng Zou;Xiao-Long Zho;Yong-Feng Huang;School of Astronomy and Space Science, Nanjing University;Key Laboratory of Modern Astronomy and Astrophysics(Nanjing University), Ministry of Education;

【机构】 School of Astronomy and Space Science, Nanjing UniversityKey Laboratory of Modern Astronomy and Astrophysics(Nanjing University), Ministry of Education

【摘要】 Type Ia Supernovae(SNe Ia) are widely used as standard candles to probe the Universe. However,how these fierce explosions are produced itself is still a highly debated issue. There are mainly two popular models for SNe Ia: the double-degenerate scenario and the single-degenerate scenario. The doubledegenerate scenario suggests that SNe Ia are produced by the coalescence of two degenerate white dwarfs,while the single-degenerate scenario suggests that the continuous accretion of a single degenerate white dwarf from its normal stellar companion will finally lead to a disastrous explosion when it is over-massive,resulting in an SN Ia. The rapid development of the gravitational wave astronomy sheds new light on the nature of SNe Ia. In this study, we calculate the gravitational wave emissions of double white dwarf coalescences and compare them with the sensitivities of several upcoming detectors. It is found that the gravitational wave emissions from double white dwarf mergers in the local universe are strong enough to be detected by LISA. We argue that LISA-like gravitational wave detectors sensitive in the frequency range of 0.01 — 0.1 Hz will be a powerful tool to test the double-degenerate model of SNe Ia, and also to probe the Universe.

【Abstract】 Type Ia Supernovae(SNe Ia) are widely used as standard candles to probe the Universe. However,how these fierce explosions are produced itself is still a highly debated issue. There are mainly two popular models for SNe Ia: the double-degenerate scenario and the single-degenerate scenario. The doubledegenerate scenario suggests that SNe Ia are produced by the coalescence of two degenerate white dwarfs,while the single-degenerate scenario suggests that the continuous accretion of a single degenerate white dwarf from its normal stellar companion will finally lead to a disastrous explosion when it is over-massive,resulting in an SN Ia. The rapid development of the gravitational wave astronomy sheds new light on the nature of SNe Ia. In this study, we calculate the gravitational wave emissions of double white dwarf coalescences and compare them with the sensitivities of several upcoming detectors. It is found that the gravitational wave emissions from double white dwarf mergers in the local universe are strong enough to be detected by LISA. We argue that LISA-like gravitational wave detectors sensitive in the frequency range of 0.01 — 0.1 Hz will be a powerful tool to test the double-degenerate model of SNe Ia, and also to probe the Universe.

【基金】 supported by the National Natural Science Foundation of China (Grant Nos. 11873030 and U1938201);by the Strategic Priority Research Program of the Chinese Academy of Sciences (“multi-waveband Gravitational Wave Universe”, Grant No. XDB23040000)
  • 【文献出处】 Research in Astronomy and Astrophysics ,天文和天体物理学研究(英文版) , 编辑部邮箱 ,2020年09期
  • 【分类号】P145.5;P142.84
  • 【下载频次】17
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