论文标题

Gogreen调查:集群星系的深层质量功能为1.0 <z <1.4和卫星淬火的复杂性质

The GOGREEN Survey: A deep stellar mass function of cluster galaxies at 1.0<z<1.4 and the complex nature of satellite quenching

论文作者

van der Burg, Remco F. J., Rudnick, Gregory, Balogh, Michael L., Muzzin, Adam, Lidman, Chris, Old, Lyndsay J., Shipley, Heath, Gilbank, David, McGee, Sean, Biviano, Andrea, Cerulo, Pierluigi, Chan, Jeffrey C. C., Cooper, Michael, De Lucia, Gabriella, Demarco, Ricardo, Forrest, Ben, Gwyn, Stephen, Jablonka, Pascale, Kukstas, Egidijus, Marchesini, Danilo, Nantais, Julie, Noble, Allison, Pintos-Castro, Irene, Poggianti, Bianca, Reeves, Andrew M. M., Stefanon, Mauro, Vulcani, Benedetta, Webb, Kristi, Wilson, Gillian, Yee, Howard, Zaritsky, Dennis

论文摘要

我们研究了1.0 <z <1.4的11个星系簇中恒星形成和静态星系的恒星质量功能(SMF),这是根据在丰富的早期环境(GOGREEN)调查中对星系的双子座观测来得出的。基于超过500小时的GEMINI/GMOS光谱法以及用一系列观测值进行的深度多波段光度法,我们将SMFS探测到10^9.7 MSUN的恒星质量极限(10^9.5 MSUN(10^9.5 MSUN),用于星形的星系)。在这个早期的时代,与同一红移相比,簇星系的比例已经高度升高。淬灭的分数过量(QFE)表示在田间形成恒星的星系的比例,但由于环境而被淬灭。 QFE的质量依赖性很大,并且从mstar = 10^9.7 msun的〜30%增加到MSTAR = 10^11.0 msun时的〜80%。尽管如此,两种单独的星系类型的SMF的形状,即星形和静态星系,在簇和场之间相同 - 高于高统计精度。然而,与不同的静态分数一起,是银河系SMF的环境依赖性,簇中低质量星系的相对缺陷。这些结果与本地宇宙中的发现形成鲜明对比,因此需要在早期进行操作的实质性不同。我们根据几种流行的淬火模型讨论这些结果。

We study the stellar mass functions (SMFs) of star-forming and quiescent galaxies in 11 galaxy clusters at 1.0<z<1.4, drawn from the Gemini Observations of Galaxies in Rich Early Environments (GOGREEN) survey. Based on more than 500 hours of Gemini/GMOS spectroscopy, and deep multi-band photometry taken with a range of observatories, we probe the SMFs down to a stellar mass limit of 10^9.7 Msun (10^9.5 Msun for star-forming galaxies). At this early epoch, the fraction of quiescent galaxies is already highly elevated in the clusters compared to the field at the same redshift. The quenched fraction excess (QFE) represents the fraction of galaxies that would be star-forming in the field, but are quenched due to their environment. The QFE is strongly mass dependent, and increases from ~30% at Mstar=10^9.7 Msun, to ~80% at Mstar=10^11.0 Msun. Nonetheless, the shapes of the SMFs of the two individual galaxy types, star-forming and quiescent galaxies, are identical between the clusters and the field - to high statistical precision. Yet, along with the different quiescent fractions is the total galaxy SMF environmentally dependent, with a relative deficit of low-mass galaxies in the clusters. These results are in stark contrast with findings in the local Universe, and thus require a substantially different quenching mode to operate at early times. We discuss these results in the light of several popular quenching models.

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