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Enhancing and inhibiting star formation: high-resolution simulation studies of the impact of cold accretion, mergers and feedback on individual massive galaxies

机译:增强和抑制明星形成:高分辨率模拟研究对寒冷的增生,兼并和反馈对个体巨大星系的影响

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The quest for a better understanding of the evolution of massive galaxies can be broadly summarised with 2 questions: how did they build up their large (stellar) masses and what eventually quenched their star formation (SF)? To tackle these questions, we use highresolution ramses simulations (Teyssier 2002) to study several aspects of the detailed interplay between accretion (mergers and cold flows), SF and feedback in individual galaxies. We examine SF in major mergers; a process crucial to stellar mass assembly. We explore whether the mergerinduced, clustered SF is as important a mechanism in average mergers, as it is in extreme systems like the Antennae. We find that interaction-induced turbulence drives up the velocity dispersion, and that there is a correlated rise in SFR in all our simulated mergers as the density pdf evolves to have an excess of very dense gas. Next, we introduce a new study into whether mechanical jet feedback can impact upon the ability of hot gas haloes to provide a supply of fuel for SF during mergers and in their remnants. Finally, we briefly review our recent study, in which we examine the effect of supernova (SN) feedback on galaxies accreting via the previously overlooked coldmode, by resimulating a stream-fed galaxy at z ~ 9. A far-reaching galactic wind results yet it cannot suppress the cold, filamentary accretion or eject significant mass in order to reduce the SFR, suggesting that SN feedback may not be as effective as is often assumed.
机译:为了更好地了解大规模星系的演变,可以大致总结2个问题:它们是如何建立他们的大(恒星)群众的和最终淬火其明星的形成(SF)?为了解决这些问题,我们使用Highresolution Ramses Simulations(Teyssier 2002)来研究accretion(合并和冷流量),SF与各个星系的反馈之间详细相互作用的几个方面。我们在主要兼并中检查SF;对恒星大规模组装至关重要的过程。我们探讨了兼并的聚类SF是否与平均合并中的重要机制,因为它在像天线等极端系统中。我们发现相互作用诱导的湍流驱动速度分散,并且在所有模拟的合并中,由于密度PDF演变为具有过多的气体,因此SFR中存在相关升高。接下来,我们将新的研究介绍了机械喷射反馈是否会对热气体卤化剂的能力产生影响,以便在合并期间提供SF的燃料供应。最后,我们简要介绍了我们最近的研究,其中我们通过在Z〜9的血管喂养的银河系中致致达到了远程到达的银河风险尚未审查了通过先前被忽视的ColdMode对Galaxies反馈的影响。它不能抑制寒冷,丝状增生或弹出大量质量以减少SFR,表明SN反馈可能与通常假定的一样有效。

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