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DISK EVOLUTION SINCE z ~ 1 IN A CDM UNIVERSE

机译:从CD宇宙中z〜1开始的磁盘演化

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摘要

Increasingly large populations of disk galaxies are now being observed at increasingly high redshifts, providing new constraints on our knowledge of how such galaxies evolve. Are these observations consistent with a cosmology in which structures form hierarchically? To probe this question, we employ SPH/N-body galaxy-scale simulations of late-type galaxies. We examine the evolution of these simulated disk galaxies from redshift 1 to 0, looking at the mass-size and luminosity-size relations, and the thickness parameter, defined as the ratio of scale height to scale length. The structural parameters of our simulated disks settle down quickly, and after redshift z = 1 the galaxies evolve to become only slightly flatter. Our simulated present-day galaxies are larger, more massive, less bright, and redder than at z = 1. The inside-out nature of the growth of our simulated galaxies reduces, and perhaps eliminates, expectations of evolution in the size-mass relation.
机译:现在,人们以越来越高的红移观察到越来越多的盘状星系,这为我们对此类星系如何发展的认识提供了新的限制。这些观察是否与结构分层形成的宇宙学一致?为了探究这个问题,我们采用了SPH / N体星系规模的后期型星系模拟。我们检查了这些模拟的盘状星系从红移1到0的演化,并观察了质量大小和光度大小之间的关系,以及厚度参数(定义为标尺高度与标尺长度的比率)。我们的模拟圆盘的结构参数迅速下降,并且在红移z = 1之后,星系演化为仅变得略微平坦。与z = 1时相比,我们今天模拟的星系更大,更重,更明亮,更红。模拟星系的内外生长特性降低了(也许消除了)大小质量关系中的演化期望。

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