A sample of ionised Fe line-emitting X-ray sources in the inner Galactic disc
Abstract
Previous studies suggest that the Galactic diffuse X-ray emission is composed of unresolved point sources, primarily mCVs. However, nearby mCVs have a much lower 6.7 keV line equivalent width () compared to the diffuse X-ray emission. Therefore, the primary contributors to the unresolved X-ray emission remain unclear. We detected a total of 859 sources in the 6.5-7 keV band using XMM-Newton observations of the inner Galactic disc, of which 72 sources show significant iron line emission at 6.7 keV. The distribution of spectral index for these 72 sources is bimodal, with peaks at and , suggesting two populations of sources. The soft X-ray sources have significantly larger than the hard X-ray sources. Furthermore, 18 of the 32 hard sources are associated with previously known CVs. We identify CV candidates in our sample as those with spectral index . The line ratio, 2-10 keV luminosity, and previous detection of spin period suggest that most of these hard sources are mCVs. The distribution of the line for the combined sample of previously identified and candidate CVs has a mean value of <> eV. Furthermore, we computed the stacked spectra of all sources detected in the 6.5-7 keV band for different flux groups, and we find evidence in the stacked spectra of hard sources that the increases with decreasing flux. The soft X-ray sources have <> keV. We identified 13 of the 30 soft sources associated with active stars, young stellar objects, and active binaries of RS CVn type. The <> of our CV candidate sample is more than twice as large as the typical found in mCVs within 500 pc, and the <> of our CV candidate sample is close to the value of Galactic diffuse X-ray emission.
Keywords
Cite
@article{arxiv.2505.06164,
title = {A sample of ionised Fe line-emitting X-ray sources in the inner Galactic disc},
author = {Samaresh Mondal and Gabriele Ponti and Tong Bao and Mark R. Morris and Frank Haberl and Nanda Rea and Sergio Campana},
journal= {arXiv preprint arXiv:2505.06164},
year = {2025}
}
Comments
Updated version after accepted for publication in Astronomy & Astrophysics, 13 pages, 14 figures