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首页> 外文期刊>The Astrophysical journal >Evolution of Late-type Galaxies in a Cluster Environment: Effects of High-speed Multiple Encounters with Early-type Galaxies
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Evolution of Late-type Galaxies in a Cluster Environment: Effects of High-speed Multiple Encounters with Early-type Galaxies

机译:集群环境中后期型星系的演化:早期型星系的高速多重遭遇的影响

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摘要

Late-type galaxies falling into a cluster would evolve being influenced by the interactions with both the cluster and the nearby cluster member galaxies. Most numerical studies, however, tend to focus on the effects of the former with little work done on those of the latter. We thus perform a numerical study on the evolution of a late-type galaxy interacting with neighboring early-type galaxies at high speed using hydrodynamic simulations. Based on the information obtained from the Coma cluster, we set up the simulations for the case where a Milky Way–like late-type galaxy experiences six consecutive collisions with twice as massive early-type galaxies having hot gas in their halos at the closest approach distances of 15–65?h ?1 kpc at the relative velocities of 1500–1600 km s?1. Our simulations show that the evolution of the late-type galaxy can be significantly affected by the accumulated effects of the high-speed multiple collisions with the early-type galaxies, such as on cold gas content and star formation activity of the late-type galaxy, particularly through the hydrodynamic interactions between cold disk and hot gas halos. We find that the late-type galaxy can lose most of its cold gas after the six collisions and have more star formation activity during the collisions. By comparing our simulation results with those of galaxy–cluster interactions, we claim that the role of the galaxy–galaxy interactions on the evolution of late-type galaxies in clusters could be comparable with that of the galaxy–cluster interactions, depending on the dynamical history.
机译:落入星团的晚期类型星系会受到与该星团以及附近星团成员星系的相互作用的影响而发展。但是,大多数数值研究倾向于集中于前者的影响,而对后者的影响却很少。因此,我们使用流体动力学模拟对与邻近的早期星系高速相互作用的晚期星系的演化进行了数值研究。根据从昏迷星团中获得的信息,我们针对类似银河系的晚型星系经历了六次连续碰撞的情况进行了模拟,其中最接近的方法中,晕圈中有热气体的质量是早期型星系的两倍相对速度为1500-1600 km s?1时,距离为15-65?h?1 kpc。我们的模拟结果表明,与早期星系的高速多次碰撞的累积效应,例如对晚期星系的冷气体含量和恒星形成活动的影响,可以大大影响晚期星系的演化。特别是通过冷盘和热气晕之间的流体动力相互作用。我们发现,晚型星系在六次碰撞后会损失大部分冷气体,并且在碰撞过程中具有更多的恒星形成活动。通过将我们的模拟结果与星系-星团相互作用的模拟结果进行比较,我们认为星系-星系相互作用对星团中晚型星系演化的作用可能与星系-星团相互作用的作用相当,具体取决于动力学历史。

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