论文标题

RAM压力剥离与主动银河核之间的联系

A Link Between Ram Pressure Stripping and Active Galactic Nuclei

论文作者

Ricarte, Angelo, Tremmel, Michael, Natarajan, Priyamvada, Quinn, Thomas

论文摘要

星系簇的密集环境可以从根本上改变落入车内星系的含量。最近的观察结果发现,“水母星系”中有大量的活性银河核(AGN),带有尾巴的气体和恒星的星系,表明明显的RAM压力剥离。 AGN和RAM压力剥离之间的关系尚不清楚。在这封信中,我们首次使用romulusc模拟,这是AGN活动与RAM压力之间的连接,这是迄今为止星系群的最高分辨率模拟之一。我们发现RAM压力剥离的明确形态学证据。对于较低的质量星系(恒星质量<10^9.5太阳能量),恒星形成和黑洞的积聚会被RAM压力抑制,然后在到达周围气之前,而对于更大的星系,在多卡里卡通道期间,增强了大量的星系。我们的分析还表明,只要银河保留了气体,Eddington比率较高的AGN更可能是在经历更高RAM压力的星系中发现的AGN。我们得出的结论是,在淬灭恒星形成之前,RAM压力触发了增强的吸积到黑洞,然后由于AGN反馈而产生加热和流出。 AGN的反馈可能反过来有助于与RAM压力同时淬灭恒星形成。

The dense environment of a galaxy cluster can radically transform the content of in-falling galaxies. Recent observations have found a significant population of active galactic nuclei (AGN) within "jellyfish galaxies," galaxies with trailing tails of gas and stars that indicate significant ram pressure stripping. The relationship between AGN and ram pressure stripping is not well understood. In this letter, we investigate the connection between AGN activity and ram pressure in a fully cosmological setting for the first time using the RomulusC simulation, one of the highest resolution simulations of a galaxy cluster to date. We find unambiguous morphological evidence for ram pressure stripping. For lower mass galaxies (with stellar masses < 10^9.5 solar masses) both star formation and black hole accretion are suppressed by ram pressure before they reach pericenter, whereas for more massive galaxies accretion onto the black hole is enhanced during pericentric passage. Our analysis also indicates that as long as the galaxy retains gas, AGN with higher Eddington ratios are more likely to be the found in galaxies experiencing higher ram pressure. We conclude that prior to quenching star formation, ram pressure triggers enhanced accretion onto the black hole, which then produces heating and outflows due to AGN feedback. AGN feedback may in turn serve to aid in the quenching of star formation in tandem with ram pressure.

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