Was GW190412 born from a hierarchical 3+1 quadruple configuration?
arXiv:2005.03045 · doi:10.3847/1538-4357/ab9b27
Abstract
The gravitational wave source GW190412 is a binary black hole (BBH) merger with three unique properties: i) its mass ratio is about 0.28, the lowest found so far, ii) it has a relatively high positive effective spin parameter χ_eff=0.25, and iii) it is observed to be precessing due to in-plane projected spin of the binary with an in-plane precession parameter χ_p=0.3. The two main formation channels of BBH formation fail to account for GW190412: field formation scenarios cannot explain the observed precession unless by invoking large natal kicks, and dynamical assembly in dense stellar systems is inefficient in producing such low mass-ratio BBH mergers. Here, we investigate whether "double mergers" in wide hierarchical quadruple systems in the "3+1" configuration could explain the unique properties of GW190412. In this scenario, a compact object quadruple system experiences two mergers: first, two compact objects in the innermost orbit merge due to secular chaotic evolution. At a later time, the merged compact object coalesces with another compact object due to secular Lidov-Kozai oscillations. We find that our scenario is consistent with GW190412. In particular, we find a preferential projected spin around χ_p=0.2. However, the likelihood of a double merger is small and the formation efficiency of these systems is uncertain. If GW190412 originated from a double merger in a 3+1 quadruple, we find a strong constraint that the first merger likely occurred between roughly equal-mass BHs in the innermost orbit, since the recoil velocity from unequal-mass BHs would otherwise have disrupted the system.
Accepted for publication in ApJ. 14 pages, 12 figures
References in corpus (25)
- Cosmic Star Formation History
- Slowing the Spins of Stellar Cores
- MOCCA-SURVEY Database I: Coalescing Binary Black Holes Originating From Globular Clusters
- Illuminating Black Hole Binary Formation Channels with Spins in Advanced LIGO
- Lidov-Kozai Cycles with Gravitational Radiation: Merging Black Holes in Isolated Triple Systems
- Dynamics of stellar black holes in young star clusters with different metallicities - II. Black hole-black hole binaries
- Suppression of extreme orbital evolution in triple systems with short range forces
- Formation of Double Compact Objects
- Black hole mergers from quadruples
- The triple evolution dynamical instability: Stellar collisions in the field and the formation of exotic binaries
- The Formation and Gravitational-Wave Detection of Massive Stellar Black-Hole Binaries
- Secular Evolution Of Binaries Near Massive Black Holes: Formation of compact binaries, merger/collision products and G2-like objects
- Dynamical Formation of Low-Mass Merging Black Hole Binaries like GW151226
- Black hole-neutron star mergers from triples
- Spin-Orbit Misalignment of Merging Black-Hole Binaries with Tertiary Companions
- Induced Ellipticity for Inspiraling Binary Systems
- Secular chaotic dynamics in hierarchical quadruple systems, with applications to hot Jupiters in stellar binaries and triples
- Hierarchical black hole triples in young star clusters: impact of Kozai-Lidov resonance on mergers
- Formation and merging of Mass Gap Black Holes in Gravitational Wave Merger Events from Wide Hierarchical Quadruple Systems
- Effective spin distribution of black hole mergers in triples
- 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
- On the formation of hot and warm Jupiters via secular high-eccentricity migration in stellar triples
- 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
- Being Careful with the Field Formation Interpretation of GW190412
Cited by in corpus (23)
- A lower bound on the maximum mass if the secondary in GW190814 was once a rapidly spinning neutron star
- Mass-gap Mergers in Active Galactic Nuclei
- The Cosmic Evolution of Binary Black Holes in Young, Globular and Nuclear Star Clusters: Rates, Masses, Spins and Mixing Fractions
- Black Hole Formation in the Lower Mass Gap through Mergers and Accretion in AGN Disks
- Search for subsolar-mass binaries in the first half of Advanced LIGO and Virgo's third observing run
- Suspicious Siblings: The Distribution of Mass and Spin Across Component Black Holes in Isolated Binary Evolution
- Merger rate density of binary black holes through isolated Population I, II, III and extremely metal-poor binary star evolution
- Multiple Stellar Evolution: a population synthesis algorithm to model the stellar, binary, and dynamical evolution of multiple-star systems
- You Can't Always Get What You Want: The Impact of Prior Assumptions on Interpreting GW190412
- Deep learning and Bayesian inference of gravitational-wave populations: Hierarchical black-hole mergers
- Compact Binary Coalescences: Astrophysical Processes and Lessons Learned
- Spin misalignment of black hole binaries from young star clusters: implications for the origin of gravitational waves events
- Interplay of spin-precession and higher harmonics in the parameter estimation of binary black holes
- Merging Hierarchical Triple Black Hole Systems with Intermediate-mass Black Holes in Population III Star Clusters
- Can Population III stars be major origins of both merging binary black holes and extremely metal poor stars?
- Comparing hierarchical black hole mergers in star clusters and active galactic nuclei
- Constraining hierarchical mergers of binary black holes detectable with LIGO-Virgo
- Librating Kozai-Lidov Cycles with a Precessing Quadrupole Potential are Analytically Approximately Solved
- Parameter Distributions of Binary Black Hole Mergers Near Supermassive Black Holes as Seen by Advanced Gravitational Wave Detectors
- Analytic understanding of the resonant nature of Kozai Lidov Cycles with a precessing quadrupole potential
- Astrophysics with the Laser Interferometer Space Antenna
- Recent LIGO-Virgo discoveries
- Identifying Host Galaxies of Binary Black Hole Mergers with Next-Generation Gravitational Wave Detector Networks