Detectability and parameter estimation of GWTC-3 events with LISA
arXiv:2206.12439 · doi:10.1103/PhysRevD.106.104034
Abstract
Multiband observations of coalescing stellar-mass black holes binaries could deliver valuable information on the formation of those sources and potential deviations from General Relativity. Some of these binaries might be first detected by the space-based detector LISA and, then, several years later, observed with ground-based detectors. Due to large uncertainties in astrophysical models, it is hard to predict the population of such binaries that LISA could observe. In this work, we assess the ability of LISA to detect the events of the third catalogue of gravitational wave sources released by the LIGO/Virgo/KAGRA collaboration. We consider the possibility of directly detecting the source with LISA and performing archival searches in the LISA data stream, after the event has been observed with ground-based detectors. We also assess how much could LISA improve the determination of source parameters. We find that it is not guaranteed that any event other than GW150914 would have been detected. Nevertheless, if any event is detected by LISA, even with a very low signal-to-noise ratio, the measurement of source parameters would improve by combining observations of LISA and ground based detectors, in particular for the chirp mass.
10 pages, 11 figures
References in corpus (10)
- Advanced LIGO
- Can environmental effects spoil precision gravitational-wave astrophysics?
- Multipolar Effective-One-Body Waveforms for Precessing Binary Black Holes: Construction and Validation
- Constraining stellar binary black hole formation scenarios with eLISA eccentricity measurements
- Probing Fundamental Physics with Gravitational Waves: The Next Generation
- Multiband gravitational-wave event rates and stellar physics
- Environmental Effects for Gravitational-wave Astrophysics
- Detectable environmental effects in GW190521-like black-hole binaries with LISA
- Bayesian parameter estimation of stellar-mass black-hole binaries with LISA
- Multiband gravitational wave cosmology with stellar origin black hole binaries
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- Parameter Estimation for Stellar-Origin Black Hole Mergers In LISA
- Residual eccentricity as a systematic uncertainty on the formation channels of binary black holes
- A weakly-parametric approach to stochastic background inference in LISA
- Stellar-mass black-hole binaries in LISA: characteristics and complementarity with current-generation interferometers
- Searching for gravitational waves from stellar-mass binary black holes early inspiral
- A comprehensive look into the accuracy of SpEC binary black hole waveforms
- Archival Inference for Eccentric Stellar-Mass Binary Black Holes in Space-Based Gravitational Wave Observations