Observational Signatures of Massive Black Hole Progenitor Pathways: Could Leo I a Smoking Gun?
arXiv:2208.02546 · doi:10.1093/mnras/stac3463
Abstract
Observational evidence is mounting regarding the population demographics of Massive Black Holes (MBHs), from the most massive cluster galaxies down to the dwarf galaxy regime. However, the progenitor pathways from which these central MBHs formed remain unclear. Here we report a potentially powerful observational signature of MBH formation in dwarf galaxies. We argue that a continuum in the mass spectrum of MBHs in (fossil) dwarf galaxies would be a unique signature of a heavy seed formation pathway. The continuum in this case would consist of the usual population of stellar mass black holes, formed through stellar evolution, plus a smaller population of heavy seed MBHs which have not yet sunk to the centre of the galaxy. Under the robust assumption of initial fragmentation of the parent gas cloud resulting in a burst of heavy seed production, a significant fraction of these seeds will survive to the present day as off-nuclear MBHs with masses less than that of the central object. Motivated by the recent discovery of a MBH in the relatively low central density Leo I galaxy, we show that such a continuum in MBH seed masses should persist from the lightest black hole masses up to the mass of the central MBH in contrast to the light seeding scenario where no such continuum should exist. The detection of off-centered MBHs and a central MBH would represent strong evidence of a heavy seeding pathway.
MNRAS accepted. 7 pages, 2 figures
References in corpus (44)
- Ultralight scalars as cosmological dark matter
- A New Sample of Low-mass Black Holes in Active Galaxies
- The evolution of massive black hole seeds
- Accretion onto the First Stellar Mass Black Holes
- Does the Fornax dwarf spheroidal have a central cusp or core?
- What is a globular cluster? An observational perspective
- Segue 1: An Unevolved Fossil Galaxy from the Early Universe
- Formation of massive black holes in rapidly growing pre-galactic gas clouds
- The Velocity Dispersion Profile of the Remote Dwarf Spheroidal Galaxy Leo I: A Tidal Hit and Run?
- Rapid growth of seed black holes in the early universe by supra-exponential accretion
- The aftermath of the first stars: massive black holes
- Dynamical friction in constant density cores: a failure of the Chandrasekhar formula
- Improved Dynamical Constraints on the Masses of the Central Black Holes in Nearby Low-mass Early-type Galactic Nuclei And the First Black Hole Determination for NGC 205
- Exploring Halo Substructure with Giant Stars X. Extended Dark Matter or Tidal Disruption?: The Case for the Leo I Dwarf Spheroidal Galaxy
- Black Holes at the Centers of Nearby Dwarf Galaxies
- Stellar kinematics in the remote Leo II dwarf spheroidal galaxy -- Another brick in the wall
- Hidden AGN in dwarf galaxies revealed by MaNGA: light echoes, off-nuclear wanderers, and a new broad-line AGN
- Formation of an embryonic supermassive star in the first galaxy
- Intermediate-mass Black Holes from High Massive-star Binary Fractions in Young Star Clusters
- Turbulent Cold Flows Gave Birth to the First Quasars
- Repeated mergers, mass-gap black holes, and formation of intermediate-mass black holes in nuclear star clusters
- Radio jets from AGN in dwarf galaxies in the COSMOS survey: mechanical feedback out to redshift 3.4
- Does disk fragmentation prevent the formation of supermassive stars in protogalaxies?
- Populating the low-mass end of the relation
- The Origins of Off-Centre Massive Black Holes in Dwarf Galaxies
- The birth of a supermassive black hole binary
- Separating Accretion and Mergers in the Cosmic Growth of Black Holes with X-ray and Gravitational Wave Observations
- Unveiling early black hole growth with multi-frequency gravitational wave observations
- Origin of supermassive black holes in massive metal-poor protoclusters
- Dissecting the stellar content of Leo I: a dwarf irregular caught in transition
- The MASSIVE Survey -- XV. A Stellar Dynamical Mass Measurement of the Supermassive Black Hole in Massive Elliptical Galaxy NGC 1453
- Dynamical analysis of the dark matter and central black hole mass in the dwarf spheroidal Leo I
- Fragmentation inside atomic cooling haloes exposed to Lyman-Werner radiation
- The Active Fraction of Massive Black Holes in Dwarf Galaxies
- Pegasus V -- a newly discovered ultra-faint dwarf galaxy on the outskirts of Andromeda
- A low upper mass limit for the central black hole in the late-type galaxy NGC 4414
- Assessing the Fornax globular cluster timing problem in different models of dark matter
- Feedback Limits to Maximum Seed Masses of Black Holes
- Dynamics of Intermediate-Mass Black Holes Wandering in the Milky Way Galaxy Using the Illustris TNG50 Simulation
- Density Wakes due to Dynamical Friction in Cored Potentials
- Detectability of Wandering Intermediate-Mass Black Holes in the Milky Way Galaxy from Radio to X-rays
- Dynamical friction in globular cluster-rich ultra-diffuse galaxies: the case of NGC5846-UDG1
- The spatial distribution of globular clusters in dwarf spheroidal galaxies and the timing problem
- Accretion from Winds of Red Giant Branch Stars May Reveal the Supermassive Black Hole in Leo I
Cited by in corpus (5)
- Direct-collapse black hole formation induced by internal radiation of host halos
- An Enhanced Massive Black Hole Occupation Fraction Predicted in Cluster Dwarf Galaxies
- Over-massive Central Black Holes in the Cosmological Simulations ASTRID and Illustris TNG50
- Extreme Tidal Stripping May Explain the Overmassive Black Hole in Leo I: a Proof of Concept
- Identification of Intermediate-mass Black Hole Candidates Among a Sample of Sd Galaxies