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Size Evolution Of The Most Massive Galaxies At 1.7 < Z < 3 From Goods Nicmos Survey Imaging

机译:来自商品Nicmos调查成像的1.7

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摘要

We measure the sizes of 82 massive (M ≥ 10~(11) M_☉) galaxies at 1.7 ≤ z ≤ 3 utilizing deep HST NICMOS data taken in the GOODS North and South fields. Our sample is almost an order of magnitude larger than previous studies at these redshifts, providing the first statistical study of massive galaxy sizes at z > 2, confirming the extreme compactness of these systems. We split our sample into disk-like (n ≤ 2) and spheroid-like (n > 2) galaxies based on their Sersic indices, and find that at a given stellar mass disk-like galaxies at z ~ 2.3 are a factor of 2.6 ± 0.3 smaller than present-day equal-mass systems, and spheroid-like galaxies at the same redshifts are 4.3 ± 0.7 smaller than comparatively massive elliptical galaxies today. At z > 2 our results are compatible with both a leveling off, or a mild evolution in size. Furthermore, the high density (~2 × 10~(10)M_ ☉kpc~(-3)) of massive galaxies at these redshifts, which are similar to present-day globular clusters, possibly makes any further evolution in sizes beyond z = 3 unlikely.
机译:我们利用在GOODS北场和南场获得的深HST NICMOS数据测量了1.7≤z≤3的82个大型(M≥10〜(11)M_☉)星系的大小。在这些红移情况下,我们的样本几乎比以前的研究大一个数量级,提供了z> 2时的大规模星系大小的首次统计研究,证实了这些系统的极端紧凑性。我们根据其Sersic指数将样本分为圆盘状星系(n≤2)和球状星系(n> 2),并发现在给定的恒星质量下,z〜2.3的圆盘状星系是2.6的因数比当今的等质量系统小±0.3,并且在相同的红移下呈球状的星系比今天的相对较大的椭圆形星系小4.3±0.7。当z> 2时,我们的结果与稳定或大小的适度增长都兼容。此外,在这些红移处,大质量星系的高密度(〜2×10〜(10)M_kkp〜(-3))与当今的球状星团相似,可能会使尺寸超过z = 3个可能性不大。

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