论文标题

I Zwicky 1流出的多上述X射线故事

The multi-epoch X-ray tale of I Zwicky 1 outflows

论文作者

Rogantini, Daniele, Costantini, Elisa, Gallo, Luigi, Wilkins, Dan, Brandt, Niel, Mehdipour, Missagh

论文摘要

狭窄的Seyfert 1 Galaxy I Zwicky 1显示了流出中离子气体的独特而复杂的系统,该系统由超快速的风和两个组件的温暖吸收器组成。在过去的二十年中,XMM-Newton多次监测了来源,从而研究了各种流出的长期变异性。与电离源的光电子化平衡中的血浆响应和响应相应地因电离光度的任何变化而变化。但是,对过去的RGS数据的详细建模显示,血浆电离状态与电离连续体之间没有相关性,从而揭示了多相温暖吸收剂的复杂长期可变性。在这里,我们提出了XMM-Newton对I Zwicky 1的新观察,该观察是2020年初以X射线通量状态较低的特征。来自RGS的软X射线频谱揭示了$ \ log耳吸收机的两个组件,并使用$ \ log耳ξ\ sim -1.0 $和$ \logξ\ sim 1.7 $。将我们的结果与先前的观察结果进行比较,遵循相同的不可预测的行为,两个吸收气体成分的电离状态正在不断变化。新的结果加强了温暖吸收剂的电离状态是由气体密度而不是电离光度驱动的。特别是,辐射驱动的,不均匀的块状流出的存在可以解释多年来电离的变化,也可以解释紫外线中观察到的线锁定的N V系统。最后,EPIC-PN频谱揭示了一条超快速的风,流速为$ \ sim 0.26c $,而电离参数为$ \ log耳ξ\ sim 3.8 $。

The narrow-line Seyfert 1 galaxy I Zwicky 1 shows a unique and complex system of ionised gas in outflow, which consists of an ultra-fast wind and a two-component warm absorber. In the last two decades, XMM-Newton monitored the source multiple times enabling the study of the long-term variability of the various outflows. Plasma in photoionisation equilibrium with the ionising source responds and varies accordingly to any change of the ionising luminosity. However, detailed modelling of the past RGS data has shown no correlation between the plasma ionisation state and the ionising continuum, revealing a complex long-term variability of the multi-phase warm absorber. Here, we present a new observation of I Zwicky 1 by XMM-Newton taken in early 2020 characterised by a lower X-ray flux state. The soft X-ray spectrum from the RGS reveals the two components of the warm absorber with $\log ξ\sim -1.0$ and $\log ξ\sim 1.7$. Comparing our results with the previous observations, the ionisation state of the two absorbing gas components is continuously changing, following the same unpredictable behaviour. The new results strengthen the scenario in which the ionisation state of the warm absorber is driven by the density of the gas rather than the ionising luminosity. In particular, the presence of a radiation driven, inhomogeneous clumpy outflow may explain both the variability in ionisation throughout the years and the line-locked N V system observed in the UV band. Finally, the EPIC-pn spectrum reveals an ultra-fast wind with an outflow velocity of $\sim 0.26c$ and ionisation parameter of $\log ξ\sim 3.8$.

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