Hydrodynamics of Collisions and Close Encounters between Stellar Black Holes and Main-sequence Stars
arXiv:2201.12368 · doi:10.3847/1538-4357/ac714f
Abstract
Recent analyses have shown that close encounters between stars and stellar black holes occur frequently in dense star clusters. Depending upon the distance at closest approach, these interactions can lead to dissipating encounters such as tidal captures and disruptions, or direct physical collisions, all of which may be accompanied by bright electromagnetic transients. In this study, we perform a wide range of hydrodynamic simulations of close encounters between black holes and main-sequence stars that collectively cover the parameter space of interest, and we identify and classify the various possible outcomes. In the case of nearly head-on collisions, the star is completely disrupted with roughly half of the stellar material becoming bound to the black hole. For more distant encounters near the classical tidal-disruption radius, the star is only partially disrupted on the first pericenter passage. Depending upon the interaction details, the partially disrupted stellar remnant may be tidally captured by the black hole or become unbound (in some cases, receiving a sufficiently large impulsive kick from asymmetric mass loss to be ejected from its host cluster). In the former case, the star will undergo additional pericenter passages before ultimately being disrupted fully. Based on the properties of the material bound to the black hole at the end of our simulations (in particular, the total bound mass and angular momentum), we comment upon the expected accretion process and associated electromagnetic signatures that are likely to result.
23 pages, 11 figures, 3 tables. Accepted for publication in ApJ
References in corpus (22)
- SPLASH: An interactive visualisation tool for Smoothed Particle Hydrodynamics simulations
- A Global Three Dimensional Radiation Magneto-hydrodynamic Simulation of Super-Eddington Accretion Disks
- MOCCA-SURVEY Database I: Coalescing Binary Black Holes Originating From Globular Clusters
- The Dynamical Evolution of Stellar Black Holes in Globular Clusters
- Intermediate-mass Black Holes from High Massive-star Binary Fractions in Young Star Clusters
- The effect of stellar-mass black holes on the structural evolution of massive star clusters
- Cosmological Evolution of Long Gamma-ray Bursts and Star Formation Rate
- The Formation of Intermediate Mass Black Holes in Galactic Nuclei
- Relativistic effects on tidal disruption kicks of solitary stars
- Black hole mergers in compact star clusters and massive black hole formation beyond the mass-gap
- Accreting black hole binaries in globular clusters
- Shock waves in tidally compressed stars by massive black holes
- A black hole detected in the young massive LMC cluster NGC 1850
- Fallback Rates from Partial Tidal Disruption Events
- Gravitational tree-code on graphics processing units: implementation in CUDA
- Implications of the delayed 2013 outburst of the ESO 243-49 HLX-1
- Partial tidal disruption events by stellar mass black holes: gravitational instability of stream and impact from remnant core
- Structured, relativistic jets driven by radiation
- Stellar Revival and Repeated Flares in Deeply Plunging Tidal Disruption Events
- Dynamics and Collisional Evolution of Closely Packed Planetary Systems
- Formation of black hole X-ray binaries with non-degenerate donors in globular clusters
- Simulating a stellar contact binary merger -- I. Stellar models