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Prospecting the wind structure of IGR J16320-4751 with XMM-Newton and Swift

机译:探讨IGR J16320-4751的风化与XMM-Newton和Swift

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The INTEGRAL satellite has revealed a previously hidden population of absorbed High Mass X-ray Binaries (HMXBs) hosting supergiant (SG) stars. Among them, IGR J16320-4751 is a classical system intrinsically obscured by its environment, with a column density of ~10~(23) cm~(-2), more than an order of magnitude higher than the interstellar absorption along the line of sight. It is composed of a neutron star (NS) rotating with a spin period of ~1300 s, accreting matter from the stellar wind of an O8I SG, with an orbital period of ~9 days. We analyzed all existing archival XMM-Newton and Swift/BAT observations of the obscured HMXB IGR J16320-4751 performing a detailed temporal and spectral analysis of the source along its orbit. Using a typical model for the supergiant wind profile, we simultaneously fitted the evolution of the hard X-ray emission and intrinsic column density along the full orbit of the NS around the SG, which allowed us to constrain physical and geometrical parameters of the binary system.
机译:整体卫星已经揭示了先前隐藏的吸收高质量X射线二进制(HMXBS)托管超差异(SG)星。其中,IGRJ16320-4751是一种经典系统,由其环境本质上遮挡,柱密度为约10〜(23)cm〜(-2),比沿着沿线的星际吸收高出一个数量级视线。它由旋转周期旋转的中子星(NS)组成,从O8I SG的恒星旋转,眶周期为〜9天。我们分析了所有现有的档案XMM-Newton和Swift / Bat观察的遮盖HMXB IGRJ16320-4751沿着其轨道执行源的详细时间和光谱分析。使用典型的典型模型为超巨型风剖面,我们同时沿着SG周围NS的完整轨道拟合了硬X射线发射和固有柱密度的进化,这使我们能够约束二元系统的物理和几何参数。

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