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首页> 外文期刊>The Astrophysical journal >SPOON-FEEDING GIANT STARS TO SUPERMASSIVE BLACK HOLES: EPISODIC MASS TRANSFER FROM EVOLVING STARS AND THEIR CONTRIBUTION TO THE QUIESCENT ACTIVITY OF GALACTIC NUCLEI
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SPOON-FEEDING GIANT STARS TO SUPERMASSIVE BLACK HOLES: EPISODIC MASS TRANSFER FROM EVOLVING STARS AND THEIR CONTRIBUTION TO THE QUIESCENT ACTIVITY OF GALACTIC NUCLEI

机译:送给超级黑洞的巨星恒星:不断演化的恒星向恒星的质量转移及其对银河系核的活跃度的贡献

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摘要

Stars may be tidally disrupted if, in a single orbit, they are scattered too close to a supermassive black hole (SMBH). Tidal disruption events are thought to power luminous but short-lived accretion episodes that can light up otherwise quiescent SMBHs in transient flares. Here we explore a more gradual process of tidal stripping where stars approach the tidal disruption radius by stellar evolution while in an eccentric orbit. After the onset of mass transfer, these stars episodically transfer mass to the SMBH every pericenter passage, giving rise to low-level flares that repeat on the orbital timescale. Giant stars, in particular, will exhibit a runaway response to mass loss and "spoon-feed" material to the black hole for tens to hundreds of orbital periods. In contrast to full tidal disruption events, the duty cycle of this feeding mode is of order unity for black holes M bh 107 M ☉. This mode of quasi-steady SMBH feeding is competitive with indirect SMBH feeding through stellar winds, and spoon-fed giant stars may play a role in determining the quiescent luminosity of local SMBHs.
机译:如果恒星在单个轨道上散布得离超大质量黑洞(SMBH)太近,则可能会造成潮汐干扰。潮汐破坏事件被认为可以增强发光但寿命短的增生事件,这些事件可以照亮短暂耀斑中原本静止的SMBH。在这里,我们探索了一个更渐进的潮汐剥离过程,在此过程中,恒星在偏心轨道上通过恒星演化接近潮汐破坏半径。传质开始后,这些恒星在每个中心点通道将质量偶发地传给SMBH,从而产生了在轨道时标上重复出现的低空耀斑。尤其是巨星,将对质量损失和“勺状送入”物质向黑洞展现数十至数百个轨道周期的失控响应。与完全的潮汐破坏事件相反,这种进给模式的占空比对于黑洞M bh 107 M of具有1个数量级的统一。这种准稳定的SMBH馈送模式与通过恒星风的间接SMBH馈送相比具有竞争性,并且用勺子喂食的巨星可能在确定本地SMBH的静态发光度中起作用。

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