The cosmic coalescence rates for double neutron star binaries (vol 601, pg L179, 2004)

被引:114
作者
Kalogera, V
Kim, C
Lorimer, DR
Burgay, M
D'Amico, N
Possenti, A
Manchester, RN
Lyne, AG
Joshi, BC
McLaughlin, MA
Kramer, M
Sarkissian, JM
Camilo, F
机构
[1] Department of Physics, Northwestern University, Evanston, IL 60208
[2] Jodrell Bank Observatory, University of Manchester, Macclesfield
[3] Dipartimento di Astronomia, Univ. degli Studi di Bologna, 40127 Bologna
[4] Dipartimento di Fisica, Univ. degli Studi di Cagliari, 09042 Monserrato
[5] INAF-Osserv. Astronomico di Cagliari, Loc. Poggio dei Pini, 09012 Capoterra
[6] INAF-Osserv. Astronomico di Bologna, 40127 Bologna
[7] Australia Telescope Natl. Facility, CSIRO, Epping, NSW 2121
[8] Natl. Center for Radio Astrophysics, Ganeshkhind, Pune 411007
[9] Columbia Astrophysics Laboratory, Columbia University, New York, NY 10027
关键词
Binaries: close; Gravitational waves; Methods: statistical; Stars: neutron;
D O I
10.1086/425868
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We report on the newly increased event rates due to the recent discovery of the highly relativistic binary pulsar J0737-3039. Using a rigorous statistical method, we present the calculations reported by Burgay et al., which produce a coalescence rate for Galactic double neutron star (DNS) systems that is higher by a factor of 6-7 compared to estimates made prior to the new discovery. Our method takes into account known pulsar survey selection effects and biases due to small-number statistics. This rate increase has dramatic implications for gravitational wave detectors. For the initial Laser Interferometer Gravitational-Wave Observatory (LIGO) detectors, the most probable detection rates for DNS in-spirals are one event per 5-250 yr; at 95% confidence, we obtain rates up to one per 1.5 yr. For the advanced LIGO detectors, the most probable rates are 20-1000 events per year. These predictions, for the first time, bring the expectations for DNS detections by the initial LIGO detectors to the astrophysically relevant regime. We also use our models to predict that the large-scale Parkes Multibeam pulsar survey with acceleration searches could detect an average of three to four binary pulsars similar to those known at present.
引用
收藏
页码:L137 / L138
页数:2
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[1]  
Kalogera V, 2004, ASTROPHYS J, V601, pL179, DOI 10.1086/382155