Field and Globular Cluster LMXBs in NGC 4278
G. Fabbiano, N. J. Brassington, L. Lentati, L. Angelini, R. L. Davies,, J. Gallagher, V. Kalogera, D.-W. Kim, A. R. King, A. Kundu, S. Pellegrini, A., J. Richings, G. Trinchieri, A. Zezas, S. Zepf

TL;DR
This study analyzes low-mass X-ray binaries in NGC 4278, revealing spectral variability, black hole masses consistent with Milky Way binaries, and a new correlation between X-ray luminosity and galactocentric radius in globular clusters.
Contribution
It provides the first detailed spectral analysis of LMXBs in NGC 4278, identifying a new L_X - R_G correlation in globular clusters and comparing spectral properties across luminosity ranges.
Findings
Black hole binary candidates with 5-15 M_sun masses.
Spectral variability similar to Galactic BHBs.
A new L_X - R_G correlation in globular clusters.
Abstract
We report a detailed spectral analysis of the population of low-mass X-ray binaries (LMXBs) detected in the elliptical galaxy NGC~4278 with Chandra. Seven luminous sources were studied individually, four in globular clusters (GCs), and three in the stellar field. The range of (0.3-8 keV) for these sources suggests that they may be black hole binaries (BHBs). Comparison of our results with simulations allows us to discriminate between disk and power-law dominated emission, pointing to spectral/luminosity variability, reminiscent of Galactic BHBs. The BH masses derived from a comparison of our spectral results with the relation of Galactic BHBs are in the 5-15 range, as observed in the Milky Way. The analysis of joint spectra of sources selected in three luminosity ranges suggests that while the high luminosity sources have prominent thermal disk…
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