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The chandra local volume survey: The X-ray point-source population of NGC 404
Journal article   Open access   Peer reviewed

The chandra local volume survey: The X-ray point-source population of NGC 404

B. Binder, B.F. Williams, M. Eracleous, T.J. Gaetz, A.K.H. Kong, E.D. Skillman and D.R. Weisz
Astrophysical Journal, Vol.763(2), 128
01/02/2013

Abstract

binaries: general galaxies: individual (NGC 404) surveys X-rays: galaxies
We present a comprehensive X-ray point-source catalog of NGC 404 obtained as part of the Chandra Local Volume Survey. A new 97 ks Chandra ACIS-S observation of NGC 404 was combined with archival observations for a total exposure of ∼123 ks. Our survey yields 74 highly significant X-ray point sources and is sensitive to a limiting unabsorbed luminosity of ∼6 × 10 <sup>35</sup> erg s <sup>-1</sup> in the 0.35-8 keV band. To constrain the nature of each X-ray source, cross-correlations with multi-wavelength data were generated. We searched overlapping Hubble Space Telescope observations for optical counterparts to our X-ray detections, but find only two X-ray sources with candidate optical counterparts. We find 21 likely low-mass X-ray binaries (LMXBs), although this number is a lower limit due to the difficulties in separating LMXBs from background active galactic nuclei. The X-ray luminosity functions (XLFs) in both the soft and hard energy bands are presented. The XLFs in the soft band (0.5-2 keV) and the hard band (2-8 keV) have a limiting luminosity at the 90% completeness limit of 10 <sup>35</sup> erg s <sup>-1</sup> and 10 <sup>36</sup> erg s <sup>-1</sup> , respectively, significantly lower than previous X-ray studies of NGC 404. We find the XLFs to be consistent with those of other X-ray populations dominated by LMXBs. However, the number of luminous (>10 <sup>37</sup> erg s <sup>-1</sup> ) X-ray sources per unit stellar mass in NGC 404 is lower than is observed for other galaxies. The relative lack of luminous XRBs may be due to a population of LMXBs with main-sequence companions formed during an epoch of elevated star formation ∼0.5 Gyr ago. © 2013. The American Astronomical Society. All rights reserved..
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https://doi.org/10.1088/0004-637X/763/2/128View
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