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Effects of variability of X-ray binaries on the X-ray luminosity functions of Milky Way

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arxiv 1602.08287 v1 pith:4VSVLIP3 submitted 2016-02-26 astro-ph.HE

classification astro-ph.HE
keywords x-rayluminositybinariesxlfsfunctionspower-lawconstructedeffects
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The X-ray luminosity functions of galaxies have become a useful tool for population studies of X-ray binaries in them. The availability of long term light-curves of X-ray binaries with the All Sky X-ray Monitors opens up the possibility of constructing X-ray luminosity functions, by also including the intensity variation effects of the galactic X-ray binaries. We have constructed multiple realizations of the X-ray luminosity functions (XLFs) of Milky Way, using the long term light-curves of sources obtained in the 2-10 keV energy band with the RXTE-ASM. The observed spread seen in the value of slope of both HMXB and LMXB XLFs are due to inclusion of variable luminosities of X-ray binaries in construction of these XLFs as well as finite sample effects. XLFs constructed for galactic HMXBs in the luminosity range 10^{36} - 10^{39} erg/sec is described by a power-law model with a mean power-law index of -0.48 and a spread due to variability of HMXBs as 0.19. XLFs constructed for galactic LMXBs in the luminosity range 10^{36} - 10^{39} erg/sec has a shape of cut-off power-law with mean power-law index of -0.31 and a spread due to variability of LMXBs as 0.07.

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  1. The low luminosity end of Galactic HMXBs with eROSITA: Establishing a luminosity floor for accreting BeXRBs

    astro-ph.HE 2026-08 conditional novelty 7.0 of 10

    Most Galactic Be X-ray binaries are caught by eROSITA at 10^33 to 10^35 erg/s outside outburst, pointing to stable low-level accretion as the usual state.

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