How important is secular evolution for black hole and neutron star mergers in 2+2 and 3+1 quadruple-star systems?
arXiv:2110.14680 · doi:10.3847/1538-4357/ac4892
Abstract
Mergers of black holes (BHs) and neutron stars (NSs) result in the emission of gravitational waves that can be detected by LIGO. In this paper, we look at 2+2 and 3+1 quadruple-star systems, which are common among massive stars, the progenitors of BHs and NSs. We carry out a detailed population synthesis of quadruple systems using the MSE code, which seamlessly takes into consideration stellar evolution, binary and tertiary interactions, -body dynamics, and secular evolution. We find that, although secular evolution plays a role in compact object (BH and NS) mergers, (70--85) \% (depending on the model assumptions) of the mergers are solely due to common envelope (CE) evolution. Significant eccentricities in the LIGO band (higher than 0.01) are only obtained with zero supernova (SNe) kicks and are directly linked to the role of secular evolution. A similar outlier effect is seen in the distribution, with negative values obtained only with zero SNe kicks. When kicks are taken into account, there are no systems that evolve into a quadruple consisting of four compact objects. For our fiducial model, we estimate the merger rates (in units of $\Gpcyr$) in 2+2 quadruples (3+1 quadruples) to be 10.8 0.9 (2.9 0.5), 5.7 0.6 (1.4 0.4) and 0.6 0.2 (0.7 0.3) for BH-BH, BH-NS and NS-NS mergers respectively. The BH-BH merger rates represent a significant fraction of the current LIGO rates, whereas the other merger rates fall short of LIGO estimates.
Accepted for publication by ApJ (with minor revisions)
References in corpus (31)
- Cosmic Star Formation History
- GWTC-2: Compact Binary Coalescences Observed by LIGO and Virgo During the First Half of the Third Observing Run
- Binary interaction dominates the evolution of massive stars
- Observation of gravitational waves from two neutron star-black hole coalescences
- GW190412: Observation of a Binary-Black-Hole Coalescence with Asymmetric Masses
- Gravitational waves from scattering of stellar-mass black holes in galactic nuclei
- The merger rate of primordial-black-hole binaries
- Towards models of gravitational waveforms from generic binaries II: Modelling precession effects with a single effective precession parameter
- Merging black hole binaries: the effects of progenitor's metallicity, mass-loss rate and Eddington factor
- Lidov-Kozai Cycles with Gravitational Radiation: Merging Black Holes in Isolated Triple Systems
- Double neutron stars: merger rates revisited
- Stellar-mass black holes in young massive and open stellar clusters and their role in gravitational-wave generation
- Impact of Massive Binary Star and Cosmic Evolution on Gravitational Wave Observations I: Black Hole-Neutron Star Mergers
- Black hole mergers from quadruples
- Interacting Binaries with Eccentric Orbits. Secular Orbital Evolution Due To Conservative Mass Transfer
- Black Hole Mergers from Hierarchical Triples in Dense Star Clusters
- Dynamical Formation of Low-Mass Merging Black Hole Binaries like GW151226
- Black hole-neutron star mergers from triples
- Orbit alignment in triple stars
- Secular chaotic dynamics in hierarchical quadruple systems, with applications to hot Jupiters in stellar binaries and triples
- Merging Black Holes in the Low-mass and High-mass Gaps from 2+2 Quadruple Systems
- Multiple Stellar Evolution: a population synthesis algorithm to model the stellar, binary, and dynamical evolution of multiple-star systems
- MSTAR -- a fast parallelised algorithmically regularised integrator with minimum spanning tree coordinates
- Chaotic quadruple secular evolution and the production of misaligned exomoons and Warm Jupiters in stellar multiples
- Analytic computation of the secular effects of encounters on a binary: features arising from second-order perturbation theory
- Hot Jupiters driven by high-eccentricity migration in globular clusters
- The formation of higher-order hierarchical systems in star clusters
- First and second-generation black hole and neutron star mergers in 2+2 quadruples: population statistics
- On the formation of hot and warm Jupiters via secular high-eccentricity migration in stellar triples
- Impact of natal kicks on merger rates and spin-orbit misalignments of black hole -- neutron star mergers
- Secular dynamics of hierarchical multiple systems composed of nested binaries, with an arbitrary number of bodies and arbitrary hierarchical structure. III. Suborbital effects: hybrid integration techniques and orbit-averaging corrections
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- Compact Binary Coalescences: Astrophysical Processes and Lessons Learned
- Algebraic and machine learning approach to hierarchical triple-star stability
- Formation of black holes in the pair-instability mass gap: Hydrodynamical simulations of a head-on massive star collision
- Quantum signatures in nonlinear gravitational waves
- Eccentric Mergers in AGN Discs: Influence of the Supermassive Black-Hole on Three-body Interactions
- An improved numerical fit to the peak harmonic gravitational wave frequency emitted by an eccentric binary
- Possible binary neutron star merger history of the primary of GW230529
- Compact object populations over cosmic time II. Compact object merger rates and masses over redshift from varying initial conditions
- Neutron star binaries produced by binary-driven hypernovae, their mergers, and the link between long and short GRBs
- The complex dynamical past and future of double eclipsing binary CzeV343: misaligned orbits and period resonance
- Compact object populations over cosmic time I. BOSSA: a Binary Object environment-Sensitive Sampling Algorithm