paper

New insights on accretion in Supergiant Fast X-ray Transients from XMM-Newton and INTEGRAL observations of IGR J175442619

arXiv:1401.3570 · doi:10.1093/mnras/stu110

Abstract

XMM-Newton observations of the supergiant fast X-ray transient IGRJ175442619 are reported and placed in the context of an analysis of archival INTEGRAL/IBIS data that provides a refined estimate of the orbital period at 4.92720.0004 days. A complete outburst history across the INTEGRAL mission is reported. Although the new XMM-Newton observations (each lasting 15 ks) targeted the peak flux in the phase-folded hard X-ray light curve of IGRJ175442619, no bright outbursts were observed, the source spending the majority of the exposure at intermediate luminosities of the order of several 10ergs (0.510keV) and displaying only low level flickering activity. For the final portion of the exposure, the luminosity of IGRJ175442619 dropped to 410ergs (0.5 - 10 keV), comparable with the lowest luminosities ever detected from this source, despite the observations being taken near to periastron. We consider the possible orbital geometry of IGRJ175442619 and the implications for the nature of the mass transfer and accretion mechanisms for both IGRJ175442619 and the SFXT population. We conclude that accretion under the `quasi-spherical accretion' model provides a good description of the behaviour of IGRJ175442619, and suggest an additional mechanism for generating outbursts based upon the mass accumulation rate in the hot shell (atmosphere) that forms around the NS under the quasi-spherical formulation. Hence we hope to aid in explaining the varied outburst behaviours observed across the SFXT population with a consistent underlying physical model.

12 pages, 5 figures, accepted for publication in MNRAS

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