No evidence for a central IMBH in M15
arXiv:1204.4457 · doi:10.1051/0004-6361/201218928
Abstract
Intermediate mass black holes (IMBHs) with expected masses M_BH ~ 10^4 M_sun are thought to bridge the gap between stellar mass black holes (M_BH ~ 3 - 100 M_sun) and supermassive black holes found at the centre of galaxies (M_BH > 10^6 M_sun). Until today, no IMBH has been confirmed observationally. The most promising objects to host an IMBH as their central mass are globular clusters. Here, we present high sensitivity multi-epoch 1.6 GHz very long baseline interferometry observations of the globular cluster M15 that has been suggested to host an IMBH. Assuming the IMBH to be accreting matter from its surrounding we expect to detect it as a point source moving with the global motion of the cluster. However, we do not detect any such object within a radius of 6000 AU of the cluster centre in any of the five observations spread over more than one year. This rules out any variability of the putative IMBH on the time scale of one to two months. To get the most stringent upper limit for the flux density of the putative IMBH we concatenate the data of all five epochs. In this data we measure a 3σ upper flux limit of 10 μJy for a central source. We employ the fundamental plane of black hole activity to estimate the mass of the central IMBH candidate. Based on previous X-ray observations of M15 our measurements indicate a 3σ upper mass limit of ~500 M_sun.
6 pages, 2 figures, accepted for publication in A&A
References in corpus (10)
- Advection-Dominated Accretion and the Black Hole Event Horizon
- Using the Fundamental Plane of Black Hole Activity to Distinguish X-ray Processes from Weakly Accreting Black Holes
- The Fundamental Plane of Accretion Onto Black Holes with Dynamical Masses
- Refining the fundamental plane of accreting black holes
- Measurement of Orbital Decay in the Double Neutron Star Binary PSR B2127+11C
- No Evidence for Intermediate-Mass Black Holes in Globular Clusters: Strong Constraints from the JVLA
- Radio Emission from the Intermediate-mass Black Hole in the Globular Cluster G1
- Testing the Paradigm that Ultraluminous X-ray Sources as a Class Represent Accreting Intermediate-Mass Black Holes
- VLA Limits for Intermediate Mass Black Holes in Three Globular Clusters
- Fokker-Planck Models for M15 without a Central Black Hole: The Role of the Mass Function
Cited by in corpus (19)
- Super-Massive Stars as a Source of Abundance Anomalies of Proton-Capture Elements in Globular Clusters
- A Multi-Mass Velocity Dispersion Model of 47 Tucanae Indicates No Evidence for an Intermediate Mass Black Hole
- The velocity dispersion profile of NGC 6388 from resolved-star spectroscopy: no evidence of a central cusp and new constraints on the black hole mass
- The absence of radio emission from the globular cluster G1
- White Dwarf Subsystems in Core-Collapsed Globular Clusters
- Gas depletion in primordial globular clusters due to accretion onto stellar-mass black holes
- The Formation of Supermassive Black Holes from Population III.1 Seeds. I. Cosmic Formation Histories and Clustering Properties
- Investigating the retention of intermediate-mass black holes in star clusters using N-body simulations
- Search for gravitational wave ringdowns from perturbed intermediate mass black holes in LIGO-Virgo data from 2005-2010
- Growing Black Holes through Successive Mergers in Galactic Nuclei: I. Methods and First Results
- Discovery of a double Blue Straggler sequence in M15: new insight into the core-collapse process
- Fast Spinning Pulsars as Probes of Massive Black Holes' Gravity
- The mass budget for intermediate-mass black holes in dense star clusters
- A consistency-test for determining whether ultra-compact dwarf galaxies could be the remnant nuclei of threshed galaxies
- Understanding the central kinematics of globular clusters with simulated integrated-light IFU observations
- Precision astrometry of pulsars and other compact radio sources in the globular cluster M15
- No Black Holes in NGC 6397
- Variability in Ultra-luminous X-ray Sources
- Searching for IMBHs in Galactic globular clusters through radial velocities of individual stars