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Gas loss in simulated galaxies as they fall into clusters

机译:模拟星系团聚时的气体损失

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摘要

We use high-resolution cosmological hydrodynamic galaxy formation simulations to gain insights into how galaxies lose their cold gas at low redshift as they migrate from the field to the high-density regions of clusters of galaxies. We find that beyond three cluster virial radii, the fraction of gas-rich galaxies is constant, representing the field. Within three cluster-centric radii, the fraction of gas-rich galaxies declines steadily with decreasing radius, reaching <10% near the cluster center. Our results suggest galaxies start to feel the effect of the cluster environment on their gas content well beyond the cluster virial radius. We show that almost all gas-rich galaxies at the cluster virial radius are falling in for the first time at nearly radial orbits. Furthermore, we find that almost no galaxy moving outward at the cluster virial radius is gas-rich (with a gas-to-baryon ratio greater than 1%). These results suggest that galaxies that fall into clusters lose their cold gas within a single radial round-trip.
机译:我们使用高分辨率的宇宙流体动力学星系形成模拟,以洞察星系如何在低红移状态下从野外迁移到星系团的高密度区域时损失冷气体。我们发现,除了三个簇病毒半径之外,富气星系的比例是恒定的,代表了这一领域。在三个以星团为中心的半径内,富含气体的星系的比例随着半径的减小而稳步下降,在星团中心附近达到<10%。我们的结果表明,星系开始感受到星团环境对其气体含量的影响,远远超出星团病毒半径。我们表明,几乎所有处于星团病毒半径的富气星系都首次在近乎径向的轨道上落入。此外,我们发现几乎没有星系在星团病毒半径处向外移动富含气体(气体与重子的比率大于1%)。这些结果表明,成簇的星系在一次径向往返过程中会损失冷气体。

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