论文标题

一两个淬火:双小合并方案

One-Two Quench: A Double Minor Merger Scenario

论文作者

Sanchez, N. Nicole, Tremmel, Michael, Werk, Jessica K., Pontzen, Andrew, Christensen, Charlotte, Quinn, Thomas, Loebman, Sarah, Cruz, Akaxia

论文摘要

使用N体+平滑粒子流体动力代码,Changa,我们确定了两个合并驱动的过程\ TexteMdash磁盘破坏和超大质量黑洞(SMBH)反馈\ Textemdash,它们可以一起使用7 Gyr的L $^*$ Galaxies。具体而言,我们以模拟的银河系(MW)类似物的方式检查了恒星形成的停止,该模拟是由与两个次要卫星的相互作用驱动的。这两种互动都发生在$ \ sim $ 100的彼此之间,卫星的质量都比其类似MW的宿主星系小5至20倍。使用\ cite {Roth2016}的遗传修饰过程,我们生成了一组四个缩放,MW-MAS星系,所有这些星系均显示出独特的星形构造历史,这是由于其组装历史的微小变化。在这四种情况下的两个中,银河系被$ z = 1 $淬灭。因为这些是受控的修改,所以我们能够隔离两个紧密间隔的次要合并事件的效果,其相对时机决定了MW-MAS MAS主星系淬灭是否。这个两次打孔的作用为:1。以峰值吸积率为主要光晕的超质量黑洞(SMBH)燃烧。和2。破坏宿主星系的冷气气盘。最终结果是,来自SMBH的反馈彻底而突然地将银河系的星形构成$ z \ of1 $。我们在{\ sc romulus25}中搜索并找到类似的淬火事件,这是一种流体动力学$(25 \,\ mathrm {mpc})^3 $音量模拟,表明该机制也足够常见,即使在MW-MASS Quenched Galaxies的一小部分中也发生在$ z = 0 $ = 0 $中。

Using the N-body+Smoothed particle hydrodynamics code, ChaNGa, we identify two merger-driven processes\textemdash disk disruption and supermassive black hole (SMBH) feedback\textemdash which work together to quench L$^*$ galaxies for over 7 Gyr. Specifically, we examine the cessation of star formation in a simulated Milky Way (MW) analog, driven by an interaction with two minor satellites. Both interactions occur within $\sim$100 Myr of each other, and the satellites both have masses 5 to 20 times smaller than that of their MW-like host galaxy. Using the genetic modification process of \cite{Roth2016}, we generate a set of four zoom-in, MW-mass galaxies all of which exhibit unique star formation histories due to small changes to their assembly histories. In two of these four cases, the galaxy is quenched by $z = 1$. Because these are controlled modifications, we are able to isolate the effects of two closely-spaced minor merger events, the relative timing of which determines whether the MW-mass main galaxy quenches. This one-two punch works to: 1. fuel the primary halo's supermassive black hole (SMBH) at its peak accretion rate; and 2. disrupt the cold, gaseous disk of the host galaxy. The end result is that feedback from the SMBH thoroughly and abruptly ends the galaxy's star formation by $z\approx1$. We search for and find a similar quenching event in {\sc Romulus25}, a hydrodynamical $(25\,\mathrm{Mpc})^3$ volume simulation, demonstrating that the mechanism is common enough to occur even in a small sample of MW-mass quenched galaxies at $z=0$.

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