The correlation of field binary black hole mergers and how 3G gravitational-wave detectors can constrain it
arXiv:2204.02619 · doi:10.1051/0004-6361/202243724
Abstract
Understanding the origin of merging binary black holes is currently one of the most pressing quests in astrophysics. We show that if isolated binary evolution dominates the formation mechanism of merging binary black holes, one should expect a correlation between the effective spin parameter, , and the redshift of the merger, , of binary black holes. This correlation comes from tidal spin-up systems preferentially forming and merging at higher redshifts due to the combination of weaker orbital expansion from low metallicity stars given their reduced wind mass loss rate, delayed expansion and have smaller maximal radii during the supergiant phase compared to stars at higher metallicity. As a result, these tightly bound systems merge with short inspiral times. Given our fiducial model of isolated binary evolution, we show that the origin of a correlation in the detectable LIGO--Virgo binary black hole population is different from the intrinsic population, which will become accessible only in the future by third-generation gravitational-wave detectors such as Einstein Telescope and Cosmic Explorer. Finally, we compare our model predictions with population predictions based on the current catalog of binary black hole mergers and find that current data favor a positive correlation of as predicted by our model of isolated binary evolution.
14 pages, 11 figures, accepted for publication in A&A
References in corpus (19)
- Array Programming with NumPy
- Modules for Experiments in Stellar Astrophysics (MESA)
- Advanced Virgo: a 2nd generation interferometric gravitational wave detector
- Cosmic Star Formation History
- Modules for Experiments in Stellar Astrophysics (MESA): Pulsating Variable Stars, Rotation, Convective Boundaries, and Energy Conservation
- Illuminating Black Hole Binary Formation Channels with Spins in Advanced LIGO
- One Channel to Rule Them All? Constraining the Origins of Binary Black Holes using Multiple Formation Pathways
- Rates of Compact Object Coalescences
- Asteroseismic measurement of surface-to-core rotation in a main sequence A star, KIC 11145123
- GWTC-2.1: Deep Extended Catalog of Compact Binary Coalescences Observed by LIGO and Virgo During the First Half of the Third Observing Run
- Building better spin models for merging binary black holes: Evidence for non-spinning and rapidly spinning nearly aligned sub-populations
- Stochastic gravitational-wave background as a tool to investigate multi-channel astrophysical and primordial black-hole mergers
- The binary black hole spin distribution likely broadens with redshift
- The spins of compact objects born from helium stars in binary systems
- The implications of high BH spins on the origin of BH-BH mergers
- Exploring Features in the Binary Black Hole Population
- Suspicious Siblings: The Distribution of Mass and Spin Across Component Black Holes in Isolated Binary Evolution
- Searching for mass-spin correlations in the population of gravitational-wave events: the GWTC-3 case study
- Biases in estimates of black hole kicks from the spin distribution of binary black holes
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