A re-evaluation of the central velocity-dispersion profile in NGC 6388
arXiv:1507.02813 · doi:10.1051/0004-6361/201425524
Abstract
Recently, two independent groups found very different results when measuring the central velocity dispersion of the galactic globular cluster NGC 6388 with different methods. While Lützgendorf et al. (2011) found a rising profile and a high central velocity dispersion (23.3 km/s), measurements obtained by Lanzoni et al. (2013) showed a value 40% lower. The value of the central velocity dispersion has a serious impact on the mass and possible presence of an intermediate-mass black hole at the center of NGC 6388. We use a photometric catalog of NGC 6388 to create a simulated SINFONI and ARGUS dataset. The construction of the IFU data cube is done with different observing conditions reproducing the conditions reported for the original observations as closely as possible. In addition, we produce an N-body realization of a 10^6 M_SUN stellar cluster with the same photometric properties as NGC 6388 to account for unresolved stars. We find that the individual radial velocities, i.e. the measurements from the simulated SINFONI data, are systematically biased towards lower velocity dispersions. The reason is that due to the wings in the point spread function the velocities get biased towards the mean cluster velocity. This study shows that even with AO supported observations, individual radial velocities in crowded fields are likely to be biased. The ARGUS observations do not show this kind of bias but were found to have larger uncertainties than previously obtained. We find a bias towards higher velocity dispersions in the ARGUS pointing when fixing the extreme velocities of the three brightest stars but find those variations are within the determined uncertainties. We rerun Jeans models and fit the kinematic profile with the new uncertainties. This yields a BH mass of M_BH = (2.8 +- 0.4) x 10^4 M_SUN and M/L ratio M/L = (1.6 +- 0.1) M_SUN/L_SUN, consistent with our previous results.
8 pages, 8 figure, accepted for publication in A&A
References in corpus (9)
- The ACS Survey of Galactic Globular Clusters. I. Overview and Clusters Without Previous HST Photometry
- Measuring the inclination and mass-to-light ratio of axisymmetric galaxies via anisotropic Jeans models of stellar kinematics
- Gemini and Hubble Space Telescope Evidence for an Intermediate Mass Black Hole in omega Centauri
- Surface Brightness Profiles of Galactic Globular Clusters from Hubble Space Telescope Images
- Hubble Space Telescope proper motion (HSTPROMO) catalogs of Galactic globular clusters. II. Kinematic profiles and maps
- Dynamical masses of ultra-compact dwarf galaxies in Fornax
- The surface density profile of NGC 6388: a good candidate for harboring an intermediate-mass black hole
- Understanding the central kinematics of globular clusters with simulated integrated-light IFU observations
- Radial velocities from VLT-KMOS spectra of giant stars in the globular cluster NGC 6388
Cited by in corpus (30)
- Observational evidence for intermediate-mass black holes
- Unification of the Fundamental Plane and Super-Massive Black Holes Masses
- N-body modeling of globular clusters: Masses, mass-to-light ratios and intermediate-mass black holes
- A Multi-Mass Velocity Dispersion Model of 47 Tucanae Indicates No Evidence for an Intermediate Mass Black Hole
- 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
- The MAVERIC Survey: Still No Evidence for Accreting Intermediate-mass Black Holes in Globular Clusters
- MUSE crowded field 3D spectroscopy of over 12,000 stars in the globular cluster NGC 6397 - II. Probing the internal dynamics and the presence of a central black hole
- Evidence for an intermediate-mass black hole in the globular cluster NGC 6624
- The MEGaN project II. Gravitational waves from intermediate mass- and binary black holes around a supermassive black hole
- The Close Stellar Companions to Intermediate Mass Black Holes
- Seeds Don't Sink: Even Massive Black Hole "Seeds" Cannot Migrate to Galaxy Centers Efficiently
- On the formation of compact, massive sub-systems in stellar clusters and its relation with intermediate mass black holes
- Detection of a 100,000 M black hole in M31's most massive globular cluster: A tidally stripped nucleus
- Dynamical analysis of the dark matter and central black hole mass in the dwarf spheroidal Leo I
- A KMOS survey of the nuclear disk of the Milky Way I: Survey design and metallicities
- MOCCA-SURVEY Database I: Is NGC 6535 a Dark Star Cluster Harboring an IMBH?
- Dynamical modelling of globular clusters: challenges for the robust determination of IMBH candidates
- Observing multiple populations in globular clusters with the ESO archive: NGC 6388 reloaded
- The mass budget for intermediate-mass black holes in dense star clusters
- Prospects for detection of intermediate-mass black holes in globular clusters using integrated-light spectroscopy
- Rates of Stellar Tidal Disruption Events around Intermediate-Mass Black Holes
- Wandering off the centre: a characterization of the random motion of intermediate-mass black holes in star clusters
- Weighing the IMBH candidate CO-0.40-0.22* in the Galactic Centre
- Correlation Between Mass Segregation and Structural Concentration in Relaxed Stellar Clusters
- Metallicity of the globular cluster NGC 6388 from high resolution spectra of more than 160 giant stars
- Relativistic scattering of a fast spinning neutron star by a massive black hole
- The Lost Dwarfs of Centaurus A and the Formation of its Dark Globular Clusters
- Denuded Dwarfs Demystified: Gas Loss from dSph Progenitors and Implications for the Minimum Mass of Galaxies
- Probing populations of dark stellar remnants in the globular clusters 47 Tuc and Terzan 5 using pulsar timing
- Variability as a new discovery channel for Intermediate-Mass Black Holes in the Time Domain Era