On the formation of compact, massive sub-systems in stellar clusters and its relation with intermediate mass black holes
arXiv:1502.01242 · doi:10.1093/mnras/stv2265
Abstract
During their evolution, star clusters undergo mass segregation, by which the orbits of the most massive stars shrink, while the lighter stars move outwards from the cluster centre. In this context, recent observations and dynamical modelling of several galactic and extra-galactic globular clusters (GCs) suggest that most of them show, close to their centre, an overabundance of mass whose nature is still matter of debate. For instance, many works show that orbitally segregated stars may collide with each other in a runaway fashion, leading to the formation of a very massive star or an intermediate mass black hole (IMBH) with a mass comparable to the observed mass excess. On the other hand, segregated stars can form a dense system if the IMBH formation fails. In this paper we study the early formation phase of a dense, massive sub-system (MSS) in several GCs models using a recently developed semi-analytical treatment of the mass segregation process. In order to investigate how the MSS properties depend on the host cluster properties, we varied initial mass function (IMF), total mass, spatial distribution and metallicity of our models. Our results show how the IMF contributes to determine the final mass of the MSS, while the metallicity and the spatial distribution play a minor role. The method presented in this paper allowed us to provide scaling relations that connect the MSS mass and the host cluster mass in agreement with the observed correlation. In order to follow the early formation stage of the MSSs and improve our statistical results, we performed several -body simulations of stellar clusters with masses between and solar masses.
17 pages, 13 figures, 6 tables
References in corpus (20)
- The Dynamical Evolution of Stellar Black Holes in Globular Clusters
- Dynamics of stellar black holes in young star clusters with different metallicities - II. Black hole-black hole binaries
- Ejection of Supermassive Black Holes from Galaxy Cores
- Gemini and Hubble Space Telescope Evidence for an Intermediate Mass Black Hole in omega Centauri
- Stellar remnants in galactic nuclei: mass segregation
- Black holes and core expansion in massive star clusters
- Dynamical friction in constant density cores: a failure of the Chandrasekhar formula
- The Globular Cluster Migratory Origin of Nuclear Star Clusters
- On the coexistence of stellar-mass and intermediate-mass black holes in globular clusters
- Henize 2-10: the ongoing formation of a nuclear star cluster around a massive black hole
- Intermediate-mass black holes in colliding clusters: Implications for lower-frequency gravitational-wave astronomy
- Intermediate-mass black holes and ultraluminous X-ray sources in the Cartwheel ring galaxy
- The central dynamics of M3, M13, and M92: Stringent limits on the masses of intermediate-mass black holes
- On the onset of runaway stellar collisions in dense star clusters I. Dynamics of the first collision
- A re-evaluation of the central velocity-dispersion profile in NGC 6388
- Neutron star natal kicks and the long-term survival of star clusters
- Dynamical friction in multi-component evolving globular clusters
- The Puzzling Negative Orbit-Period Derivative of the Low-Mass X-Ray Binary 4U 1820-30 in NGC 6624
- The impact of metallicity-dependent mass loss versus dynamical heating on the early evolution of star clusters
- Probing the role of dynamical friction in shaping the BSS radial distribution. I - Semi-analytical models and preliminary N-body simulations
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- Stellar-mass black holes in young massive and open stellar clusters and their role in gravitational-wave generation
- Stellar-mass black holes in young massive and open stellar clusters and their role in gravitational-wave generation II
- MOCCA-SURVEY Database I: Galactic Globular Clusters Harbouring a Black Hole Subsystem
- The Milky Way's Supermassive Black Hole: How good a case is it? A Challenge for Astrophysics & Philosophy of Science
- Gravitational Waves and Intermediate-mass Black Hole Retention in Globular Clusters
- Gravitational wave sources from inspiralling globular clusters in the Galactic Centre and similar environments
- MOCCA-SURVEY Database I. Unravelling black hole subsystems in globular clusters
- Stellar-mass black holes in young massive and open stellar clusters IV: updated stellar-evolutionary and black hole spin models and comparisons with the LIGO-Virgo O1/O2 merger-event data
- The effect of stellar-mass black holes on the central kinematics of omega Cen: a cautionary tale for IMBH interpretations
- The MEGaN project II. Gravitational waves from intermediate mass- and binary black holes around a supermassive black hole
- Intermediate mass black holes from stellar mergers in young star clusters
- Birth, life, and death of black hole binaries around supermassive black holes: dynamical evolution of gravitational wave sources
- Radial anisotropy in omega Cen limiting the room for an intermediate-mass black hole
- Order in the chaos: eccentric black hole binary mergers in triples formed via strong binary-binary scatterings
- Breaching the limit: formation of GW190521-like and IMBH mergers in young massive clusters
- Merging stellar and intermediate-mass black holes in dense clusters: implications for LIGO, LISA and the next generation of gravitational wave detectors
- Quiescent and active galactic nuclei as factories of merging compact objects in the era of gravitational-wave astronomy
- Detection of astrophysical gravitational wave sources by TianQin and LISA
- Gamma-ray and X-ray emission from the Galactic Centre: hints on the nuclear star cluster formation history
- Lack of nuclear clusters in dwarf spheroidal galaxies: implications for massive black holes formation and the cusp/core problem
- Do open star clusters evolve toward energy equipartition?
- The MEGaN project I. Missing formation of massive nuclear clusters and tidal disruption events by star clusters - massive black hole interactions
- Gravitational waves from the remnants of the first stars in nuclear star clusters
- Finding Black Holes with Black Boxes -- Using Machine Learning to Identify Globular Clusters with Black Hole Subsystems
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- Prospects for detection of intermediate-mass black holes in globular clusters using integrated-light spectroscopy
- Understanding the environment around the intermediate mass black hole candidate ESO 243-49 HLX-1
- Gravitational waves from mergers of Population III binary black holes: roles played by two evolution channels
- Wandering off the centre: a characterization of the random motion of intermediate-mass black holes in star clusters
- Demographics of Tidal Disruption Events with L-Galaxies: I. Volumetric TDE rates and the abundance of Nuclear Star Clusters
- The evolution of kicked stellar-mass black holes in star cluster environments II. Rotating star clusters
- Gravitational Brownian motion as inhomogeneous diffusion: black hole populations in globular clusters
- Planetary Systems in a Star Cluster II: intermediate-mass black holes and planetary systems
- Illuminating black hole subsystems in young star clusters