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GW170817:Implications for the Stochastic Gravitational-Wave Background from Compact Binary Coalescences

https://doi.org/10.1103/PhysRevLett.120.091101

  • AuthorB. P. Abbott et al,C. Adams,,F. Acernese,,K. Ackley,,R. Abbott,,T. Adams,,T. D. Abbott,,김환선,손재주,오상훈,오정근
  • JournalPhysical Review Letters (0031-9007), 120, 091101-1 ~ 091101-12
  • Enrollment typeSCI
  • publication date 20180228
The LIGO Scientific and Virgo Collaborations have announced the event GW170817, the first detection of gravitational waves from the coalescence of two neutron stars. The merger rate of binary neutron stars estimated from this event suggests that distant, unresolvable binary neutron stars create a significant astrophysical stochastic gravitational-wave background. The binary neutron star component will add to the contribution from binary black holes, increasing the amplitude of the total astrophysical background relative to previous expectations. In the Advanced LIGO-Virgo frequency band most sensitive to stochastic backgrounds (near 25 Hz), we predict a total astrophysical background with amplitude ΩGW(f=25Hz)=1.8+2.7?1.3×10?9 with 90% confidence, compared with ΩGW(f=25Hz)=1.1+1.2?0.7×10?9 from binary black holes alone. Assuming the most probable rate for compact binary mergers,