Mrk 841捕获的连续体变暗:软x射线过量性质的新线索

M. Mehdipour, G. Kriss, J. Kaastra, E. Costantini, J. Mao
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引用次数: 1

摘要

我们报道了Mrk 841的光谱能量分布(SED)的显著变化,为活动星系核(agn)软x射线过量辐射的产生提供了新的见解。通过对Seyfert-1星系样本的快速监测,我们在Mrk 841中发现了x射线光谱硬化事件。因此,我们在2022年启动了xmm -牛顿、核星和哈勃太空望远镜的观测来研究这一事件。我们之前对其他agn中此类事件的研究表明,它们是由遮挡风引起的。然而,Mrk 841中的事件具有不同的光谱特征和来源。我们发现是软x射线的多余成分变暗了。重要的是,这伴随着光学/紫外连续体的类似下降,表明与软x射线过量有关。相比之下,x射线幂律和反射分量的变化相对较小。我们的SED模型表明,软x射线过剩是光学/UV盘发射的高能延伸,由热复合化产生。我们发现圆盘的温度在2022年下降,这解释了观测到的SED变暗。然后,我们检查了超过15年的Swift数据,以进一步破译Mrk 841的紫外线和x射线变化。在x射线光谱硬度的变化和紫外连续体的变化之间发现了显著的关系,再次表明软过剩和圆盘发射是相互联系的。这是很容易解释的,如果软过剩是由暖化产生的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dimming of Continuum Captured in Mrk 841: New Clues on the Nature of the Soft X-Ray Excess
We report on a remarkable change in the spectral energy distribution (SED) of Mrk 841, providing new insights on how the soft X-ray excess emission in active galactic nuclei (AGNs) is produced. By Swift monitoring of a sample of Seyfert-1 galaxies, we found an X-ray spectral hardening event in Mrk 841. We thereby triggered our XMM-Newton, NuSTAR, and Hubble Space Telescope observations in 2022 to study this event. Our previous investigations of such events in other AGNs had shown that they are caused by obscuring winds. However, the event in Mrk 841 has different spectral characteristics and origin. We find it is the soft X-ray excess component that has become dimmer. This is, importantly, accompanied by a similar decline in the optical/UV continuum, suggesting a connection to the soft X-ray excess. In contrast, there is relatively little change in the X-ray power law and the reflection components. Our SED modeling suggests that the soft X-ray excess is the high-energy extension of the optical/UV disk emission, produced by warm Comptonization. We find the temperature of the disk dropped in 2022, explaining the observed SED dimming. We then examined the Swift data, taken over 15 yr, to further decipher the UV and X-ray variabilities of Mrk 841. A significant relation between the variabilities of the X-ray spectral hardness and that of the UV continuum is found, again suggesting that the soft excess and the disk emission are interlinked. This is readily explicable if the soft excess is produced by warm Comptonization.
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