Limits on hierarchical black hole mergers from the most negative systems
arXiv:2207.02924 · doi:10.3847/2041-8213/ac86c4
Abstract
It has been proposed that some black holes (BHs) in binary black hole (BBH) systems are born from "hierarchical mergers" (HM); i.e. earlier mergers of smaller BHs. These HM products have spin magnitudes , and, if they are dynamically assembled into BBH systems, their spin orientations will be sometimes anti-aligned with the binary orbital angular momentum. In fact, as Baibhav et al. (2020) showed, of BBH systems that include HM products will have an effective inspiral spin parameter, . Nevertheless, the LIGO-Virgo-Kagra (LVK) gravitational-wave (GW) detectors have yet to observe a BBH system with , leading to upper limits on the fraction of HM products in the population. We fit the astrophysical mass and spin distribution of BBH systems and measure the fraction of BBH systems with , which implies an upper limit on the HM fraction. We find that fewer than of systems in the underlying BBH population include HM products (90\%. credibility). Even among BBH systems with primary masses , the HM fraction is less than 69\%, which may constrain the location of the pair-instability mass gap. With 300 GW events (to be expected in the LVK's next observing run), if we fail to observe a BBH with , we can conclude that the HM fraction is smaller than .
10 pages, 4 figures. Updated to match version accepted by ApJL
References in corpus (21)
- Advanced Virgo: a 2nd generation interferometric gravitational wave detector
- Advanced LIGO
- Properties and astrophysical implications of the 150 Msun binary black hole merger GW190521
- The Effect of Pair-Instability Mass Loss on Black Hole Mergers
- Mind the gap: The location of the lower edge of the pair instability supernovae black hole mass gap
- Slowing the Spins of Stellar Cores
- Illuminating Black Hole Binary Formation Channels with Spins in Advanced LIGO
- Analysis of spin precession in binary black hole systems including quadrupole-monopole interaction
- Alignment of the spins of supermassive black holes prior to coalescence
- Distinguishing Spin-Aligned and Isotropic Black Hole Populations With Gravitational Waves
- Estimating the final spin of a binary black hole coalescence
- Hierarchical data-driven approach to fitting numerical relativity data for nonprecessing binary black holes with an application to final spin and radiated energy
- Where are LIGO's Big Black Holes?
- The final mass and spin of black hole mergers
- Formation of Double Compact Objects
- Remnant mass, spin, and recoil from spin aligned black-hole binaries
- The Origin of Black Hole Spin in Galactic Low-Mass X-ray Binaries
- Polluting the pair-instability mass gap for binary black holes through super-Eddington accretion in isolated binaries
- The spins of compact objects born from helium stars in binary systems
- The Case for Hypercritical Accretion in M33 X-7
- The Formation of Rapidly Rotating Black Holes in High Mass X-ray Binaries
Cited by in corpus (8)
- Quiescent and active galactic nuclei as factories of merging compact objects in the era of gravitational-wave astronomy
- Black-hole mergers in disklike environments could explain the observed - correlation
- Globular cluster formation histories, masses and radii inferred from gravitational waves
- Revealing the - Correlation among Coalescing Binary Black Holes and Tentative Evidence for AGN-driven Hierarchical Mergers
- Structure and Skewness of the Effective Inspiral Spin Distribution of Binary Black Hole Mergers
- Signatures of a subpopulation of hierarchical mergers in the GWTC-4 gravitational-wave dataset
- On the Astrophysical Origin of Binary Black Hole Subpopulations: A Tale of Three Channels?
- Parameter inference of millilensed gravitational waves using neural spline flows