论文标题

商品 - alma:$ z $ = 2-3个大型星系的星形成的衰落缓慢

GOODS-ALMA: The slow downfall of star-formation in $z$ = 2-3 massive galaxies

论文作者

Franco, M., Elbaz, D., Zhou, L., Magnelli, B., Schreiber, C., Ciesla, L., Dickinson, M., Nagar, N., Magdis, G., Alexander, D. M., Béthermin, M., Demarco, R., Daddi, E., Wang, T., Mullaney, J., Sargent, M., Inami, H., Shu, X., Bournaud, F., Chary, R., Coogan, R. T., Ferguson, H., Finkelstein, S. L., Giavalisco, M., Gómez-Guijarro, C., Iono, D., Juneau, S., Lagache, G., Lin, L., Motohara, K., Okumura, K., Pannella, M., Papovich, C., Pope, A., Rujopakarn, W., Silverman, J., Xiao, M.

论文摘要

我们研究了35个星系样品的特性,在商品 - alma领域的1.1 mm处检测到(69个Arcmin $^2 $,分辨率= 0.60英寸,RMS $ \ simeq $ 0.18 mjy beam $ $^{ - 1} $。衍生其主要的物理特性。在$ z \ sim $ 2.5-3的情况下,与阿尔玛测量的这些星系的尺寸异常低,与$ h $ band的大小和$ z \ sim2 $椭圆形星系的趋势兼容,这些星系是在构建压缩的个时代的一部分。紧凑型星系的恒星形成区域是,其寿命越短(没有气体补充)。

We investigate the properties of a sample of 35 galaxies, detected with ALMA at 1.1 mm in the GOODS-ALMA field (area of 69 arcmin$^2$, resolution = 0.60", RMS $\simeq$ 0.18 mJy beam$^{-1}$). Using the UV-to-radio deep multiwavelength coverage of the GOODS-South field, we fit the spectral energy distributions of these galaxies to derive their key physical properties. The galaxies detected by ALMA are among the most massive at $z$ = 2-4 (M$_{\star,med}$ = 8.5$ \times$ 10$^{10}$ M$_\odot$) and are either starburst or located in the upper part of the galaxy star-forming main sequence. A significant portion of our galaxy population ($\sim$ 40%), located at $z\sim$ 2.5-3, exhibits abnormally low gas fractions. The sizes of these galaxies, measured with ALMA, are compatible with the trend between $H$-band size and stellar mass observed for $z\sim2$ elliptical galaxies suggesting that they are building compact bulges. We show that there is a strong link between star formation surface density (at 1.1 mm) and gas depletion time: the more compact a galaxy's star-forming region is, the shorter its lifetime will be (without gas replenishment). The identified compact sources associated with relatively short depletion timescales ($\sim$100 Myr), are the ideal candidates to be the progenitors of compact elliptical galaxies at $z$ $\sim$ 2.

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