Spectroscopic identification of INTEGRAL high-energy sources with VLT/ISAAC
Abstract
The INTEGRAL satellite has been observing the gamma-ray sky for 15 years and has detected over 900 X-ray sources of various nature. However, more than 200 of these sources still lack precise identification. Our goal is to reveal the nature of the high-energy sources detected by INTEGRAL. In particular, we want to improve the census of X-ray binaries. Photometry and spectroscopy were performed in July 2012 on 14 INTEGRAL sources in near-infrared at the Very Large Telescope on the European Southern Observatory-UT3 telescope equipped with the ISAAC spectrograph. We used K images reaching to a depth of magnitude 18.5 to look for unique counterparts to high-energy detections to check for both extended sources and photometric variability. The analysis of near-infrared spectral features allows us to constrain the nature of these X-ray sources by comparing them to stellar spectra atlases. We present photometric and/or spectroscopic data for 14 sources (IGR J004654005, IGR J104476027, IGR J124896243, IGR J130206359, IGR J131866257, IGR J152935609, IGR J172003116, IGR J174043655, IGR J175862129, IGR J175972201, IGR J18457+0244, IGR J18532+0416, IGR J193080530, and IGR J193780617). We conclude that 5 of these are active galactic nuclei, 5 are cataclysmic variables, 2 are low- or intermediate-mass X-ray binaries, and 2 are Be high-mass X-ray binaries.
Keywords
Cite
@article{arxiv.1808.09816,
title = {Spectroscopic identification of INTEGRAL high-energy sources with VLT/ISAAC},
author = {Francis Fortin and Sylvain Chaty and Alexis Coleiro and John Tomsick and Christian Nitschelm},
journal= {arXiv preprint arXiv:1808.09816},
year = {2018}
}
Comments
15 pages