论文标题

是什么导致TDE中碎片流的碎片化?

What causes the fragmentation of debris streams in TDEs?

论文作者

Sacchi, Andrea, Lodato, Giuseppe, Toci, Claudia, Motta, Valentina

论文摘要

当恒星穿过太近的黑洞并被其重力潮汐场撕裂时,发生潮汐破坏事件(TDE)。干扰后,恒星碎片形成了一个扩展的气态流。该流的形态和演变特别有趣,因为它最终决定了事件本身的观察性能。在这项工作中,我们对恒星的TDE进行了3D流体动力学模拟,该恒星以索引γ= 5/3的多性球形模型,并研究所得气流的重力稳定性。我们为在界限,未结合和边缘约束的情况下提供了流的分析解决方案,该解决方案使我们能够描述流属性并分析所涉及的物理过程的时间尺度,并应用在恒星形成环境中开发的形式主义。我们的结果是,当发生碎片时,它会因支持气体自我重力的压力失败而推动。我们还表明,包括流气压还包括仅考虑黑洞潮汐力的稳定性标准也更准确得多,从而对与溪流相关的各种力的时间演变进行了分析预测。我们的结果指出,与这些事件的观察窗口相比,时间尺度上发生了碎片化,因此预计不会产生重要的观察特征。

A tidal disruption event (TDE) occurs when a star passes too close to a supermassive black hole and gets torn apart by its gravitational tidal field. After the disruption, the stellar debris form an expanding gaseous stream. The morphology and evolution of this stream is particularly interesting as it ultimately determines the observational properties of the event itself. In this work we perform 3D hydrodynamical simulations of the TDE of a star modelled as a polytropic sphere of index γ = 5/3, and study the gravitational stability of the resulting gas stream. We provide an analytical solution for the evolution of the stream in the bound, unbound and marginally bound case, that allows us to describe the stream properties and analyse the time-scales of the physical processes involved, applying a formalism developed in star formation context. Our results are that, when fragmentation occurs, it is fueled by the failure of pressure in supporting the gas against its self-gravity. We also show that a stability criterion that includes also the stream gas pressure proves to be far more accurate than one that only considers the black hole tidal forces, giving analytical predictions of the time evolution of the various forces associated to the stream. Our results point out that fragmentation occurs on timescales longer compared with the observational windows of these events and is thus not expected to give rise to significant observational features.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源