Probing the X-Ray Binary Populations of the Ring Galaxy NGC 1291
B. Luo, G. Fabbiano, T. Fragos, D.-W. Kim, K. Belczynski, N. J., Brassington, S. Pellegrini, P. Tzanavaris, Junfeng Wang, A. Zezas

TL;DR
This study uses Chandra X-ray observations to analyze the populations of X-ray binaries in the ring galaxy NGC 1291, revealing differences between the bulge and ring regions and suggesting varied stellar population ages.
Contribution
It provides the first detailed XRB population analysis of NGC 1291, including XLFs and population synthesis modeling, highlighting differences between bulge and ring stellar populations.
Findings
Majority of XRBs are likely low-mass X-ray binaries (LMXBs).
Ring XRBs are associated with a younger stellar population.
XLFs are consistent with populations dominated by LMXBs.
Abstract
We present Chandra studies of the X-ray binary (XRB) populations in the bulge and ring regions of the ring galaxy NGC 1291. We detect 169 X-ray point sources in the galaxy, 75 in the bulge and 71 in the ring, utilizing the four available Chandra observations totaling an effective exposure of 179 ks. We report photometric properties of these sources in a point-source catalog. There are ~40% of the bulge sources and ~25% of the ring sources showing >3\sigma long-term variability in their X-ray count rate. The X-ray colors suggest that a significant fraction of the bulge (~75%) and ring (~65%) sources are likely low-mass X-ray binaries (LMXBs). The spectra of the nuclear source indicate that it is a low-luminosity AGN with moderate obscuration; spectral variability is observed between individual observations. We construct 0.3-8.0 keV X-ray luminosity functions (XLFs) for the bulge and ring…
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