论文标题

在绿色山谷中具有HST Grisms:颜色演化,越过时间尺度和红色序列在$ z = 1.0-1.8 $时的增长

Across the Green Valley with HST grisms: colour evolution, crossing time-scales and the growth of the red sequence at $z=1.0-1.8$

论文作者

Noirot, Gaël, Sawicki, Marcin, Abraham, Roberto, Bradač, Maruša, Iyer, Kartheik, Moutard, Thibaud, Pacifici, Camilla, Ravindranath, Swara, Willott, Chris J.

论文摘要

我们测量了整个绿谷的颜色演化和淬火时间尺度$ z = 1.0-1.8 $的星系。我们从Candels商品 - 南部和UDS多波段光度计的光谱能量分布建模中获取REST-FRAME $ nuvrk $颜色,并选择蓝云,绿色valley和红色序列星系。另外,我们通过拟合其深层档案HST Grism光谱来限制这些星系的恒星形成历史(SFH)参数(年龄,$τ$)。我们得出了星系颜色时代的关系,并表明只有迅速发展的星系具有特征性的延迟 - $τ$ sfh的时间量表,$ <0.5 $ gyr在这些红移之后,在这些红移中达到了红色序列。这些结果表明,这些星系的出色质量积聚在离开蓝云并进入绿色山谷后保持最小(即,它可能代表星系的最终,静止群众的$ \ lyssim 5 \%$)。堆叠光谱中对年龄敏感功能的视觉检查还支持这样的观点:这些星系沿着蓝光$ \ rightarrow $ green-valley $ \ rightarrow $ ridearrow $ red-sequence track沿着Quench序列。对于这个快速发展的人群,我们测量了一个绿色谷的交叉时间尺度为$ 0.99^{+0.42} _ { - 0.25} $ gyr,绿色山谷底部的越过$ 0.82^{+0.27} _ {-0.25} $ mag/gyr。基于这些时间尺度,我们估计巨大的数量密度($ m_ \ star> 10^{10} m_ \ odot $)红色序列星系在这些红移时都会加倍,这与quiescent Galaxy Galaxy Stellar恒星质量功能的演变非常同意。这些结果提供了一种新的方法来测量随着时间的流逝的星系淬火,并代表了未来JWST,Euclid和Roman Space望远镜程序的探路者研究。

We measure the colour evolution and quenching time-scales of $z=1.0-1.8$ galaxies across the green valley. We derive rest-frame $NUVrK$ colours and select blue-cloud, green-valley and red-sequence galaxies from the spectral energy distribution modelling of CANDELS GOODS-South and UDS multi-band photometry. Separately, we constrain the star-formation history (SFH) parameters (ages, $τ$) of these galaxies by fitting their deep archival HST grism spectroscopy. We derive the galaxy colour-age relation and show that only rapidly evolving galaxies with characteristic delayed-$τ$ SFH time-scales of $<0.5$ Gyr reach the red sequence at these redshifts, after a period of accelerated colour evolution across the green valley. These results indicate that the stellar mass build-up of these galaxies stays minimal after leaving the blue cloud and entering the green valley (i.e., it may represent $\lesssim 5\%$ of the galaxies' final, quiescent masses). Visual inspection of age-sensitive features in the stacked spectra also supports the view that these galaxies follow a quenching sequence along the blue-cloud $\rightarrow$ green-valley $\rightarrow$ red-sequence track. For this rapidly evolving population, we measure a green-valley crossing time-scale of $0.99^{+0.42}_{-0.25}$ Gyr and a crossing rate at the bottom of the green valley of $0.82^{+0.27}_{-0.25}$ mag/Gyr. Based on these time-scales, we estimate that the number density of massive ($M_\star>10^{10} M_\odot$) red-sequence galaxies doubles every Gyr at these redshifts, in remarkable agreement with the evolution of the quiescent galaxy stellar mass function. These results offer a new approach to measuring galaxy quenching over time and represent a pathfinder study for future JWST, Euclid, and Roman Space Telescope programs.

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