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XMM-Newton observations reveal the disappearance of the wind in 4U?1630?47

机译:XMM-Newton观测揭示了4U?1630?47中风的消失

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We report on XMM-Newton observations of the black hole X-ray binary 4U?1630?47 during its 2012?2013 outburst. The first five observations monitor the source as its luminosity increases across the high?soft state of accretion. In the sixth observation the source has made a transition to an “anomalous” state, characterised by a significant contribution of electron scattering. A thermally/radiatively driven disc wind is present in the first four observations, which becomes more photoionised as the luminosity increases with time. In the fifth observation, the wind is not observed any more as a consequence of strong photoionisation and the low sensitivity of this observation. This overall trend is then consistent with a fully ionised wind causing the electron scattering characteristic of the anomalous state in the sixth observation. A broad iron emission line co-exists with the absorption features from the wind in the first four observations but is not visible in the last two observations. We find that the changes in the state of the wind as measured from modelling the absorption features with a self-consistent warm absorber model are correlated to the changes in the broad iron line. When the latter is modelled with a reflection component we find that the reflection fraction decreases as the illumination increases. We propose that the changes in both the absorption and broad emission lines are caused by the increasing luminosity and temperature of the accretion disc along the soft state. Such changes ultimately enable the transition to a state where the wind is fully ionised and consequently Comptonisation plays a significant role.
机译:我们报告XMM-Newton在2012-2013年爆发期间对黑洞X射线二进制4U?1630?47的观测。前五个观测值监视着光源在高软度吸积状态下发光度的增加。在第六次观测中,源已经转变为“异常”状态,其特征是电子散射的显着贡献。在前四个观察中存在热/辐射驱动的盘状风,随着光度随时间增加,该风变得更加电离。在第五次观察中,由于强光电离作用和该观察结果的低灵敏度,不再观察到风。然后,该总体趋势与引起第六次观测中异常状态的电子散射特性的完全电离的风一致。在前四个观测中,一条宽广的铁排放线与风的吸收特征共存,但在后两个观测中看不到。我们发现,通过使用自洽的热吸收器模型对吸收特征进行建模而测得的风的状态变化与宽铁线的变化相关。当使用反射分量对后者建模时,我们发现反射分数随照明度的增加而降低。我们认为吸收线和宽发射线的变化都是由于吸积盘沿软态的发光度和温度的增加引起的。这种变化最终使过渡到风被完全电离的状态,因此康普顿化起着重要作用。

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