Are Most Detected Tidal Disruption Events Partial?
大多数被探测到的潮汐瓦解事件是否为部分性事件?
During a tidal disruption event (TDE), a star loses mass due to the tidal gravitational forces of the black hole. In a partial TDE, a stellar remnant is left behind. Several dozen TDEs have been detected so far, including repeating partial events. We use the PHANTOM smoothed particle hydrodynamics code to model the disruption of a 1 M<SUB>⊙</SUB> star around a 10<SUP>6</SUP> M<SUB>⊙</SUB> black hole for impact parameters resulting in <=50% mass loss. We only consider zero-energy orbits. Our simulations show that the mass fallback rate can exceed the Eddington limit for β >= 0.8, allowing debris to obscure the accretion disc by forming a reprocessing layer, similar to full TDEs. The mass fallback rate is shallower than t<SUP>-5/3</SUP>, tracking closer to t<SUP>-9/4</SUP>. Assuming thermal emission from the debris, that shock heating is trapped, that electron scattering dominates the opacity, and a color correction (f<SUB>col</SUB>) of 1.7, we find temperatures of ~10<SUP>4</SUP> K, optical bolometric luminosities of ~10<SUP>42-44</SUP> erg s<SUP>-1</SUP>, and blackbody radii ranging from 10 to 100 au for our simulations. We compare our values with observations and find support for the previous argument that some TDEs classified as full disruptions might actually be partial. Moreover, our results explain the detected optical/UV TDEs. We also find that our zero-energy partial TDEs have properties similar to the repeating partial TDEs such as ASSASN-19dj, ASSASN-14ko, ASSASN-18ul, ASSASN-22ci, and AT2020vdq. In the β = 0.8 isentropic simulation where radiation is assumed to escape, we find X-ray luminosities of ~10<SUP>44-45</SUP> erg s<SUP>-1</SUP> and radii lower than the inner most-stable circular orbit.
展开 ▾系统模拟质量损失不超过 50% 的零能量部分 TDE,发现质量回落率更接近 t^{-9/4} 而非经典 t^{-5/3},且光学/紫外光度和重复部分 TDE 特征吻合。
部分潮汐瓦解事件在观测上仍难与完全潮汐瓦解区分,已有研究提出一些归类为完全毁坏的事件实际上可能是部分毁坏。本文通过零能量轨道、质量损失不超过 50% 的 SPH 模拟,给出从回落率、温度、光度到黑体半径的自洽图像,表明 β≳0.8 时回落率可超过爱丁顿极限并形成再处理层遮蔽吸积盘。这支持将部分光学/紫外 TDE 纳入统一解释框架,并与 ASSASN-19dj、ASSASN-14ko 等重复部分事件的特征一致。未来结合更高分辨率的辐射转移和更长时程、非零能量轨道模拟,有望进一步厘清部分与完全 TDE 的观测判据,并推动对重复事件中恒星幸存和再剥蚀过程的理解。
接收 2026-06-21 · 刊出 2026-08-19 · 收录 2026-08-24