XMM - Newton reveals ∼ 100 new LMXBs in M 31 from variability studies
نویسندگان
چکیده
We have conducted a survey of X-ray sources in XMM-Newton observations of M31, examining their power density spectra (PDS) and spectral energy distributions (SEDs). Our automated source detection yielded 535 good X-ray sources; to date, we have studied 225 of them. In particular, we examined the PDS because low mass X-ray binaries (LMXBs) exhibit two distinctive types of PDS. At low accretion rates, the PDS is characterised by a broken power law, with the spectral index changing from ∼0 to ∼1 at some frequency in the range ∼0.01–1 Hz; we refer to such PDS as Type A. At higher accretion rates, the PDS is described by a simple power law; we call these PDS Type B. Of the 225 sources studied to date, 75 exhibit Type A variability, and are almost certainly LMXBs, while 6 show Type B but not Type A, and are likely LMXBs. Of these 81 candidate LMXBs, 71 are newly identified in this survey; furthermore, they are mostly found near the centre of M31. Furthermore, most of the X-ray population in the disc are associated with the spiral arms, making them likely high mass X-ray binaries (HMXBs). In general these HMXBs do not exhibit Type A variability, while many central X-ray sources (LMXBs) in the same luminosity range do. Hence the PDS may distinguish between LMXBs and HMXBs in this luminosity range.
منابع مشابه
Identifying a black hole X-ray transient in M 31 with XMM-Newton and Chandra
Stochastic variability in two out of four XMM-Newton observations of XMMUJ004303+4115 along with its power spectra and X-ray luminosities suggest a low-mass X-ray binary (LMXB) with a black hole primary. However, Chandra observations resolve the object into two point sources. We use data from 35 Chandra observations to analyse the contributions of each source, and attribute the variability to C...
متن کاملOn the artificial nature of aperiodic variability in XMM-Newtonobservations of M 31 X-ray sources and the ultraluminous X-raysource NGC 4559 ULX-7
Context. Power density spectra (PDS) that are characteristic of low mass X-ray binaries (LMXBs) have been previously reported for M 31 X-ray sources, observed by XMM-Newton. However, we have recently discovered that these PDS result from the improper addition/subtraction of non-simultaneous lightcurves. Aims. To understand the properties and origins of the artefact. Methods. We re-analysed our ...
متن کاملTiming the bright X - ray population of the core of M 31 with XMM - Newton
All 63 discrete X-ray sources brighter than LX=5×10 36 erg s −1 in any of four XMM-Newton observations of the core of M31 were surveyed for time variability over timescales of seconds to thousands of seconds, and for intensity variations between observations. This population is likely to be dominated by low mass X-ray binaries (LMXBs). Analysis of the shapes of power density spectra (PDS) of th...
متن کاملTiming the bright X - ray population of the core of M 31 with XMM -
All 63 discrete X-ray sources brighter than LX=5×10 36 erg s −1 in any of four XMM-Newton observations of the core of M31 were surveyed for time variability over timescales of seconds to thousands of seconds, and for intensity variations between observations. This population is likely to be dominated by low mass X-ray binaries (LMXBs). Analysis of the shapes of power density spectra (PDS) of th...
متن کاملar X iv : a st ro - p h / 04 09 12 2 v 1 6 S ep 2 00 4 Black hole hunting in the Andromeda Galaxy
We present a new technique for identifying stellar mass black holes in low mass X-ray binaries (LMXBs), and apply it to XMM-Newton observations of M31. We examine X-ray time series variability seeking power density spectra (PDS) typical of LMXBs accreting at a low accretion rate (which we refer to as Type A PDS); these are very similar for black hole and neutron star LMXBs. Galactic neutron sta...
متن کامل