English

Multiband Gravitational-Wave Astronomy: Observing binary inspirals with a decihertz detector, B-DECIGO

General Relativity and Quantum Cosmology 2018-08-10 v3 High Energy Astrophysical Phenomena

Abstract

An evolving Japanese gravitational-wave (GW) mission in the deci-Hz band: B-DECIGO (DECihertz laser Interferometer Gravitational wave Observatory) will enable us to detect GW150914-like binary black holes, GW170817-like binary neutron stars, and intermediate-mass binary black holes out to cosmological distances. The B-DECIGO band slots in between the aLIGO-Virgo-KAGRA-IndIGO (hecto-Hz) and LISA (milli-Hz) bands for broader bandwidth; the sources described emit GWs for weeks to years across the multiband to accumulate high signal-to-noise ratios. This suggests the possibility that joint detection would greatly improve the parameter estimation of the binaries. We examine B-DECIGO's ability to measure binary parameters and assess to what extent multiband analysis could improve such measurement. Using non-precessing post-Newtonian waveforms with the Fisher matrix approach, we find for systems like GW150914 and GW170817 that B-DECIGO can measure the mass ratio to within <0.1%< 0.1\%, the individual black-hole spins to within <10%< 10\%, and the coalescence time to within <5< 5\,s about a week before alerting aLIGO and electromagnetic facilities. Prior information from B-DECIGO for aLIGO can further reduce the uncertainty in the measurement of, e.g., certain neutron star tidally-induced deformations by factor of 6\sim 6, and potentially determine the spin-induced neutron star quadrupole moment. Joint LISA and B-DECIGO measurement will also be able to recover the masses and spins of intermediate-mass binary black holes at percent-level precision. However, there will be a large systematic bias in these results due to post-Newtonian approximation of exact GW signals.

Keywords

Cite

@article{arxiv.1802.06977,
  title  = {Multiband Gravitational-Wave Astronomy: Observing binary inspirals with a decihertz detector, B-DECIGO},
  author = {Soichiro Isoyama and Hiroyuki Nakano and Takashi Nakamura},
  journal= {arXiv preprint arXiv:1802.06977},
  year   = {2018}
}

Comments

v3: 22 pages, 2 figures, matches the published version

R2 v1 2026-06-23T00:27:16.196Z