Mass models of NGC 6624 without an intermediate-mass black hole
arXiv:1709.06874 · doi:10.1093/mnras/stx2694
Abstract
An intermediate-mass black hole (IMBH) was recently reported to reside in the centre of the Galactic globular cluster (GC) NGC 6624, based on timing observations of a millisecond pulsar (MSP) located near the cluster centre in projection. We present dynamical models with multiple mass components of NGC 6624 - without an IMBH - which successfully describe the surface brightness profile and proper motion kinematics from the Hubble Space Telescope (HST) and the stellar mass function at different distances from the cluster centre. The maximum line-of-sight acceleration at the position of the MSP accommodates the inferred acceleration of the MSP, as derived from its first period derivative. With discrete realizations of the models we show that the higher-order period derivatives - which were previously used to derive the IMBH mass - are due to passing stars and stellar remnants, as previously shown analytically in literature. We conclude that there is no need for an IMBH to explain the timing observations of this MSP.
8 pages, 7 figures, MNRAS. Updated to match final journal style
References in corpus (13)
- The ATNF Pulsar Catalogue
- 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
- 6th and 8th Order Hermite Integrator for N-body Simulations
- A New Catalog of Globular Clusters in the Milky Way
- A stellar-mass black hole population in the globular cluster NGC 6101?
- Evidence for an intermediate-mass black hole in the globular cluster NGC 6624
- Intermediate Mass Black Hole Induced Quenching of Mass Segregation in Star Clusters
- Ultra-deep GEMINI near-infrared observations of the bulge globular cluster NGC 6624
- An Approximate Analytic Model of a Star Cluster with Potential Escapers
- Fokker-Planck Models for M15 without a Central Black Hole: The Role of the Mass Function
- The Puzzling Negative Orbit-Period Derivative of the Low-Mass X-Ray Binary 4U 1820-30 in NGC 6624
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