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Spectral analysis of the dipping LMXB system XB 1916-053

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arxiv 1904.05770 v1 pith:BSUQKYS2 submitted 2019-04-11 astro-ph.HE

Spectral analysis of the dipping LMXB system XB 1916-053

classification astro-ph.HE
keywords absorptionobservationscomponentphotonsspectraspectrumsystemaims
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Context: XB 1916-053 is a low mass X-ray binary system (LMXB) hosting a neutron star (NS) and showing periodic dips. The spectrum of the persistent emission was modeled with a blackbody component having a temperature between 1.31 and 1.67 keV and with a Comptonization component with an electron temperature of 9.4 keV and a photon index $\Gamma$ between 2.5 and 2.9. The presence of absorption features associated with highly ionized elements suggested the presence of partially ionized plasma in the system. Aims: In this work we performed a study of the spectrum of XB 1916-053, which aims to shed light on the nature of the seed photons that contribute to the Comptonization component. Methods: We analyzed three Suzaku observations of XB 1916-053: the first was performed in November 2006 and the others were carried out in October 2014. We extracted the persistent spectra from each observation and combined the spectra of the most recent observations, obtaining a single spectrum with a higher statistic. We also extracted and combined the spectra of the dips observed during the same observations. Results: On the basis of the available data statistics, we infer that the scenario in which the corona Comptonizes photons emitted both by the innermost region of the accretion disk and the NS surface is not statistically relevant with respect to the case in which only photons emitted by the NS surface are Comptonized. We find that the source is in a soft spectral state in all the analyzed observations. We detect the K$\alpha$ absorption lines of \ion{Fe}{xxv} and \ion{Fe}{xxvi}, which have already been reported in literature, and for the first time the K$\beta$ absorption lines of the same ions. We also detect an edge at 0.876 keV, which is consistent with a \ion{O}{viii} K absorption edge. (Abridged)

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  1. XMM-Newton and Swift Unveil Another X-Ray Transient in NGC 4945, XMM J130514.64-493311.27

    astro-ph.HE 2026-07 accept novelty 5.0

    A previously undetected X-ray transient, XMM J130514.64-493311.27, was discovered in NGC 4945 with properties consistent with an X-ray binary caught in outburst.