论文标题

潮汐破坏事件的光线光谱来自在光学厚流中重新处理

Optical line spectra of tidal disruption events from reprocessing in optically thick outflows

论文作者

Parkinson, Edward J., Knigge, Christian, Matthews, James H., Long, Knox S., Higginbottom, Nick, Sim, Stuart A., Mangham, Samuel W.

论文摘要

大量的潮汐破坏事件(TDE)主要在光学和紫外线(UV)波长下辐射,只有弱的软X射线组件。这种光学过剩的一种模型提出,从紧凑的积聚盘中的热X射线发射通过光学厚的信封重新处理为更长的波长。在这里,我们在光学厚的积聚盘风的背景下探索了这种重新处理的情况。使用最先进的蒙特卡洛辐射传递和电离软件,我们生成了用于风和圆盘托管TDE的合成紫外线和光谱。我们的模型灵感来自观察结果,涵盖了一系列的积聚率和风力学范围。我们发现,这种流出可以有效地重新处理盘发射,并产生宽阔的Balmer和氦重组特征,在TDE中常见并表现出不对称的红色翅膀。此外,重新处理的光谱能分布(SED)的特征色温远低于积聚盘的色彩温度。我们明确显示了黑洞质量,积聚率和风能的变化如何影响观察到的宽带SED和线频谱。通常,较慢,较密的风倾向于重新加工更多的辐射,并产生更强大的Balmer发射。我们认为的大多数流出都太高了,无法产生紫外线吸收特征,但这对输入SED很敏感。例如,仅在4 $ r_ {isco} $下截断内盘可充分降低风电离状态,以产生视力线的紫外线吸收功能

A significant number of tidal disruption events (TDEs) radiate primarily at optical and ultraviolet (UV) wavelengths, with only weak soft X-ray components. One model for this optical excess proposes that thermal X-ray emission from a compact accretion disc is reprocessed to longer wavelengths by an optically thick envelope. Here, we explore this reprocessing scenario in the context of an optically thick accretion disc wind. Using state-of-the-art Monte Carlo radiative transfer and ionization software, we produce synthetic UV and optical spectra for wind and disc-hosting TDEs. Our models are inspired by observations, spanning a realistic range of accretion rates and wind kinematics. We find that such outflows can efficiently reprocess the disc emission and produce the broad Balmer and helium recombination features commonly seen in TDEs and exhibit asymmetric red wings. Moreover, the characteristic colour temperature of the reprocessed spectral energy distribution (SED) is much lower than that of the accretion disc. We show explicitly how changes in black hole mass, accretion rate and wind properties affect the observed broadband SED and line spectrum. In general, slower, denser winds tend to reprocess more radiation and produce stronger Balmer emission. Most of the outflows we consider are too highly ionized to produce UV absorption features, but this is sensitive to the input SED. For example, truncating the inner disc at just 4 $R_{ISCO}$ lowers the wind ionization state sufficiently to produce UV absorption features for sight lines looking into the wind

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