Stellar Escape from Globular Clusters. I. Escape Mechanisms and Properties at Ejection
arXiv:2211.16523 · doi:10.3847/1538-4357/acbcc1
Abstract
The theory of stellar escape from globular clusters (GCs) dates back nearly a century, especially the gradual evaporation of GCs via two-body relaxation coupled with external tides. More violent ejection can also occur via strong gravitational scattering, supernovae, gravitational wave-driven mergers, tidal disruption events, and physical collisions, but comprehensive study of the many escape mechanisms has been limited. Recent exquisite kinematic data from the Gaia space telescope has revealed numerous stellar streams in the Milky Way (MW) and traced the origin of many to specific MWGCs, highlighting the need for further examination of stellar escape from these clusters. In this study, the first of a series, we lay the groundwork for detailed follow-up comparisons between Cluster Monte Carlo (CMC) GC models and the latest Gaia data on the outskirts of MWGCs, their tidal tails, and associated streams. We thoroughly review escape mechanisms from GCs and examine their relative contributions to the escape rate, ejection velocities, and escaper demographics. We show for the first time that three-body binary formation may dominate high-speed ejection from typical MWGCs, potentially explaining some of the hypervelocity stars in the MW. Due to their mass, black holes strongly catalyze this process, and their loss at the onset of observable core collapse, characterized by a steep central brightness profile, dramatically curtails three-body binary formation, despite the increased post-collapse density. We also demonstrate that even when born from a thermal eccentricity distribution, escaping binaries have significantly nonthermal eccentricities consistent with the roughly uniform distribution observed in the Galactic field.
28 pages, 6 figures, 4 tables, accepted to ApJ
References in corpus (45)
- Array Programming with NumPy
- The Effect of Pair-Instability Mass Loss on Black Hole Mergers
- The Dynamical Evolution of Stellar Black Holes in Globular Clusters
- Star cluster disruption by giant molecular clouds
- N-body modeling of globular clusters: Masses, mass-to-light ratios and intermediate-mass black holes
- Black holes and core expansion in massive star clusters
- Further insight into gravitational recoil
- Gravitational Wave Recoil and the Retention of Intermediate Mass Black Holes
- The core binary fractions of star clusters from realistic simulations
- The Galactic distribution of X-ray binaries and its implications for compact object formation and natal kicks
- Intermediate-mass Black Holes from High Massive-star Binary Fractions in Young Star Clusters
- galstreams: A Library of Milky Way Stellar Stream Footprints and Tracks
- The effect of stellar-mass black holes on the structural evolution of massive star clusters
- Repeated mergers, mass-gap black holes, and formation of intermediate-mass black holes in nuclear star clusters
- A Low-Mass Stellar-Debris Stream Associated with a Globular Cluster Pair in the Halo
- Millisecond Pulsars and Black Holes in Globular Clusters
- Orbital Clustering Identifies the Origins of Galactic Stellar Streams
- A stellar-mass black hole population in the globular cluster NGC 6101?
- Modeling gravitational recoil from precessing highly-spinning unequal-mass black-hole binaries
- Stellar triples on the edge; Comprehensive overview of the evolution of destabilised triples leading to stellar and binary exotica
- Relativistic effects on tidal disruption kicks of solitary stars
- Monte Carlo Simulations of Star Clusters - V. The globular cluster M4
- White Dwarf Subsystems in Core-Collapsed Globular Clusters
- In Search of the Thermal Eccentricity Distribution
- Black Hole Mergers from Star Clusters with Top-Heavy Initial Mass Functions
- The Dynamical Effects of White Dwarf Birth Kicks in Globular Star Clusters
- On the tidal tails of Milky Way globular clusters
- On the Radial Distribution of White Dwarfs in the Globular Cluster NGC 6397
- The Effects of Orbital Inclination on the Scale Size and Evolution of Tidally Filling Star Clusters
- Great Balls of FIRE II: The evolution and destruction of star clusters across cosmic time in a Milky Way-mass galaxy
- Compact Object Modeling in the Globular Cluster 47 Tucanae
- Stellar graveyards: Clustering of compact objects in globular clusters NGC 3201 and NGC 6397
- Demographics of triple systems in dense star clusters
- Formation of Low-mass Black Holes and Single Millisecond Pulsars in Globular Clusters
- Intermediate-mass Black Holes on the Run from Young Star Clusters
- Constraining white-dwarf kicks in globular clusters
- Treatment of realistic tidal field in Monte Carlo simulations of star clusters
- Constraining white-dwarf kicks in globular clusters : III. Cluster Heating
- MOCCA-SURVEY Database II -- Properties of Intermediate Mass Black Holes escaping from star clusters
- Close Encounters of Tight Binary Stars with Stellar-mass Black Holes
- Implications of recoil kicks for black hole mergers from LIGO/Virgo catalogs
- The luminosity function of quasars by the Principle of Maximum Entropy
- Intermediate-Mass Black Holes in binary-rich star clusters
- Searching for the extra-tidal stars of globular clusters using high-dimensional analysis and a core particle spray code
- Constraining Black Hole Natal Kicks with Astrometric Microlensing
Cited by in corpus (13)
- Fast-moving stars around an intermediate-mass black hole in Omega Centauri
- Dynamical formation of Gaia BH3 in the progenitor globular cluster of the ED-2 stream
- Three-Body Binary Formation in Clusters: Analytical Theory
- Improved particle spray algorithm for modeling globular cluster streams
- Runaway and Hypervelocity Stars from Compact Object Encounters in Globular Clusters
- Lower-mass-gap Black Holes in Dense Star Clusters
- : New insights from deep spectroscopic observations of the tidal tails of the globular clusters NGC 1261 and NGC 1904
- Dynamics of intermediate mass black holes in globular clusters. Wander radius and anisotropy profiles
- Shadows of the Colossus: Hierarchical Black Hole Mergers in a 10-million-body Globular Cluster Simulation
- Evaluating the gravitational wave detectability of globular clusters and the Magellanic Clouds for LISA
- A systematic method to identify runaways from star clusters produced from single-binary interactions: A case study of M67
- DELVE-ing into the Milky Way's Globular Clusters: Assessing extra-tidal features in NGC 5897, NGC 7492, and testing detectability with deeper photometry
- Discovery of a double white dwarf in the Galactic globular cluster NGC 6397