论文标题
潮汐破坏事件中的积聚盘风:紫外光谱线作为方向指标
Accretion Disc Winds in Tidal Disruption Events: Ultraviolet Spectral Lines as Orientation Indicators
论文作者
论文摘要
一些潮汐破坏事件(TDE)在其休息框紫外线(UV)光谱中显示出蓝光的宽吸收线(BALS),而另一些则显示出宽的发射线(BELS)。在类星体中观察到类似的现象学,并积聚了白矮人,可以将其解释为与积聚盘风中线形成相关的方向效应。我们提出并探索了TDES类似的统一方案。我们提出了由最先进的蒙特卡洛离子化和辐射转移代码生成的盘和风托TDE的合成紫外光谱。我们的型号涵盖了各种碟片的几何形状和运动学。这样的风自然会繁殖巴尔斯和贝尔。通常,看见风锥的视线优先产生香脂,而其他方向则优先产生BELS。我们还研究了风块和CNO加工丰度对观察到的光谱的影响。块状风倾向于产生更强的紫外线发射和吸收线,因为结块同时增加了相关离子物种的发射度量和丰度,而后者通过降低流出的电离状态。采用CNO加工丰度的主要作用是削弱了C〜 {\ sc IV} 〜1550〜〜和在光谱中的N \ TextSc {V} 〜1240〜〜的增强。我们得出的结论是,积聚盘中的线形成是解释TDE的不同紫外线光谱的有前途的机制。如果这是正确的,则可以使用BAL和BEL TDE的相对数量来估计流出的覆盖率。这项工作中的模型可应要求在线公开提供。
Some tidal disruption events (TDEs) exhibit blueshifted broad absorption lines (BALs) in their rest-frame ultraviolet (UV) spectra, while others display broad emission lines (BELs). Similar phenomenology is observed in quasars and accreting white dwarfs, where it can be interpreted as an orientation effect associated with line formation in an accretion disc wind.We propose and explore a similar unification scheme for TDEs. We present synthetic UV spectra for disc and wind-hosting TDEs, produced by a state-of-the-art Monte Carlo ionization and radiative transfer code. Our models cover a wide range of disc wind geometries and kinematics. Such winds naturally reproduce both BALs and BELs. In general, sight lines looking into the wind cone preferentially produce BALs, while other orientations preferentially produce BELs. We also study the effect of wind clumping and CNO-processed abundances on the observed spectra. Clumpy winds tend to produce stronger UV emission and absorption lines, because clumping increases both the emission measure and the abundances of the relevant ionic species, the latter by reducing the ionization state of the outflow. The main effect of adopting CNO-processed abundances is a weakening of C~{\sc iv}~1550~Å~ and an enhancement of N \textsc{v}~1240~Å~ in the spectra. We conclude that line formation in an accretion disc wind is a promising mechanism for explaining the diverse UV spectra of TDEs. If this is correct, the relative number of BAL and BEL TDEs can be used to estimate the covering factor of the outflow. The models in this work are publicly available online and upon request.