论文标题

银河系的前十亿年中的潮汐破坏事件

Tidal disruption events in the first billion years of a galaxy

论文作者

Pfister, Hugo, Dai, Jane, Volonteri, Marta, Auchettl, Katie, Trebitsch, Maxime, Ramirez-Ruiz, Enrico

论文摘要

大规模黑洞(MBH)上的恒星积聚可以喂养MBH并产生潮汐破坏事件(TDES)。我们介绍了一种新的出色动机模型,以自感来对待宇宙学模拟中的TDE,并将其应用于最终质量$ 3 \ times 10^{10} \ Mathrm {\,m} _ \ odot $ at $ z = 6 $的星系组装。该星系的TDE速率为$ \ sim 10^{ - 5} \ mathrm {\,yr}^{ - 1} $,与本地观察一致,但宇宙已有10亿年历史。一小部分被破坏的恒星参与了MBH的生长,主导它,直到MBH达到质量$ \ SIM $ \ sim 5 \ times 10^5 \ mathrm {\,M} _ \ odot $,但是与天然气相比,它们的贡献变得可忽略不计。 TDE可能是生长轻型MBH种子的可行机制,但是当MBH变得足够庞大以达到活性银河核的光度并被检测到时,预期的TDE较少。银河合并在银河系中带来了多个MBHS,从而在$ 100 \ mathrm {\,myr} $周围的$ \ sim 1 $数量级上提高了Galaxy中的全局TDE速率。这种增强不在中央MBH上,而是由插入星系中的MBH存在引起的。这是在宇宙学环境中对TDE的第一个自我一致的研究,并突出显示,恒星和TDE是自然过程,这是在宇宙早期的乳〜Way-Mas Galaxy中发生的。

Accretion of stars on massive black holes (MBHs) can feed MBHs and generate tidal disruption events (TDEs). We introduce a new physically motivated model to self-consistently treat TDEs in cosmological simulations, and apply it to the assembly of a galaxy with final mass $3\times 10^{10}\mathrm{\, M}_\odot$ at $z=6$. This galaxy exhibits a TDE rate of $\sim 10^{-5}\mathrm{\, yr}^{-1}$, consistent with local observations but already in place when the Universe was one billion year old. A fraction of the disrupted stars participate in the growth of MBHs, dominating it until the MBH reaches mass $\sim 5 \times 10^5 \mathrm{\, M}_\odot$, but their contribution then becomes negligible compared to gas. TDEs could be a viable mechanism to grow light MBH seeds, but fewer TDEs are expected when the MBH becomes sufficiently massive to reach the luminosity of, and be detected as, an active galactic nucleus. Galaxy mergers bring multiple MBHs in the galaxy, resulting in an enhancement of the global TDE rate in the galaxy by $\sim 1$ order of magnitude during $100\mathrm{\, Myr}$ around mergers. This enhancement is not on the central MBH, but caused by the presence of MBHs in the infalling galaxies. This is the first self consistent study of TDEs in a cosmological environment and highlights that accretion of stars and TDEs are a natural process occurring in a Milky~Way-mass galaxy at early cosmic times.

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