论文标题

部分可观测时空混沌系统的无模型预测

Ejection-accretion connection in NLS1 AGN 1H 1934-063

论文作者

Xu, Yerong, Pinto, Ciro, Kara, Erin, Masterson, Megan, García, Javier A., Fabian, Andrew C., Parker, Michael L., Barret, Didier, Alston, William N., Cusumano, Giancarlo

论文摘要

活性银河核(AGN)中物质的积聚和射精是紧密连接的现象,代表了调节中央超级黑洞生长和宿主星系的演变的基本机制。但是,涉及的确切物理过程尚未完全理解。我们介绍了同时\ xmm \和\ nustar \观察狭窄的线seyfert 1(NLS1)AGN 1H 1934-063的高分辨率光谱分析,在此期间,X射线磁通量下降了$ \ sim6 $,随后在140千座中恢复了$ \ sim6 $。通过时间分辨和磁通分辨的X射线光谱法,我们发现了潜在可变的温暖吸收剂和相对稳定的超快速流出(UFO,$ v_ \ Mathrm {ufo} \ sim-0.075 \,c $) ($ \ log(ξ/\ mathrm {erg \,cm \,s^{ - 1})} \ sim1.6 $)。检测到的发射线(尤其是1 \ keV附近的强大和广泛的特征)是未知来源的,无法通过光电或碰撞离子化平衡中的等离子体发射来解释。这种发射线可以通过强烈的蓝光($ z \ sim-0.3 $)的二次反射来很好地描述赤道流出的底部,这可能揭示了内部积分流光子的重新处理与弹射的重新处理之间的联系。但是,这种情况虽然非常有前途只是试探性的,并且将通过未来的观察进行测试。

Accretion and ejection of matter in active galactic nuclei (AGN) are tightly connected phenomena and represent fundamental mechanisms regulating the growth of the central supermassive black hole and the evolution of the host galaxy. However, the exact physical processes involved are not yet fully understood. We present a high-resolution spectral analysis of a simultaneous \xmm\ and \nustar\ observation of the narrow line Seyfert 1 (NLS1) AGN 1H 1934-063, during which the X-ray flux dropped by a factor of $\sim6$ and subsequently recovered within 140 kiloseconds. By means of the time-resolved and flux-resolved X-ray spectroscopy, we discover a potentially variable warm absorber and a relatively stable ultra-fast outflow (UFO, $v_\mathrm{UFO}\sim-0.075\,c$) with a mild ionization state ($\log(ξ/\mathrm{erg\,cm\,s^{-1})}\sim1.6$). The detected emission lines (especially a strong and broad feature around 1\,keV) are of unknown origin and cannot be explained with emission from plasmas in photo- or collisional-ionization equilibrium. Such emission lines could be well described by a strongly blueshifted ($z\sim-0.3$) secondary reflection off the base of the equatorial outflows, which may reveal the link between the reprocessing of the inner accretion flow photons and the ejection. However, this scenario although being very promising is only tentative and will be tested with future observations.

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