By studying the optical brightness surface density of the globular cluster NGC 6388, it has been recently proposed that it harbors a central intermediate-mass black hole with mass ≃5.7×103 M⊙. We expect that the compact object in the center of NGC 6388 emits radiation in the X-ray band as a consequence of the accretion from the surrounding matter. We searched for XMM-Newton and Chandra observations towards NGC 6388 to test this hypothesis. The Chandra satellite disentangles several point-like X-ray sources, probably low mass X-ray binaries, well within the core radius of the globular cluster. However, three of them, coinciding with the cluster center of gravity, remain unresolved. Their total luminosity is LXObs≃2.7×1033 erg s−1. If one of these sources is the X-ray counterpart of the intermediate-mass black hole in NGC 6388, the corresponding upper limit on the accretion efficiency, with respect to the Eddington luminosity, is 3×10−9. This measurement could be tightened if moderately deep radio observations of the field were performed.
@article{arxiv.0712.1134,
title = {The globular cluster NGC 6388: $XMM$-Newton and $Chandra$ observations},
author = {A. A. Nucita and F. De Paolis and G. Ingrosso and S. Carpano and M. Guainazzi},
journal= {arXiv preprint arXiv:0712.1134},
year = {2007}
}