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Related papers: The first quenched galaxies, when and how?

200 papers

We present a comprehensive study of the star formation histories of massive-quenched galaxies at $z=3$ in 3 semi-analytic models (SHARK, GAEA, GALFORM) and 3 cosmological hydrodynamical simulations (EAGLE, IllustrisTNG, Simba). We study the…

The process by which massive galaxies transition from blue, star-forming disks into red, quiescent galaxies remains one of the most poorly-understood aspects of galaxy evolution. In this investigation, we attempt to gain a better…

Using the TNG50 simulation, we determine observationally motivated metrics that can distinguish quenching galaxies from star forming galaxies for $M_{*} \geqslant 10^{9.5}~M_{\odot}$, based on the spatial distribution of their stellar…

An analysis of more than 3000 galaxies resolved at better than 114 pc/h at z=0.62 in a LAOZI cosmological adaptive mesh refinement hydrodynamic simulation is performed and insights gained on star formation quenching and color migration. The…

Cosmology and Nongalactic Astrophysics · Physics 2015-06-18 Renyue Cen

The presence of massive quiescent galaxies at high redshifts is still a challenge for most models of galaxy formation. The aim of this work is to compare the observed number density and properties of these galaxies with the predictions of…

Astrophysics of Galaxies · Physics 2019-07-31 Rachele Cecchi , Micol Bolzonella , Andrea Cimatti , Giacomo Girelli

High-redshift ($z\sim1$) galaxy clusters are the domain where environmental quenching mechanisms are expected to emerge as important factors in the evolution of the quiescent galaxy population. Uncovering these initially subtle effects…

We use NIRSpec/MSA spectroscopy and NIRCam imaging to study a sample of 18 massive ($\log\; M_{*}/M_{\odot} \gt 10\;$dex), central quiescent galaxies at $2\leq z \leq 5$ in the GOODS fields, to investigate their number density,…

Using a stellar mass limited sample of $\sim 46,600$ galaxies ($M_* > 10^{9.1}\,M_{\odot}$) at $0.5 < z < 2$, we show that the tellar mass, rather than the environment, is the main parameter controlling quenching of star formation in…

Astrophysics of Galaxies · Physics 2015-09-16 Seong-Kook Lee , Myungshin Im , Jae-Woo Kim , Jennifer Lotz , Conor McPartland , Michael Peth , Anton Koekemoer

Using the cosmological simulations IllustrisTNG, we perform a comprehensive analysis of quiescent, massive galaxies at $z \gtrsim 3$. The goal is to understand what suppresses their star formation so early in cosmic time, and how other…

Astrophysics of Galaxies · Physics 2024-10-28 Shalini Kurinchi-Vendhan , Marion Farcy , Michaela Hirschmann , Francesco Valentino

We investigate the connection between environment and the different quenching channels that galaxies are prone to follow in the rest-frame NUVrK colour diagram, as identified by Moutard et al. (2016b). Namely, the fast quenching channel…

A rare population of massive disk galaxies have been found to invade the red sequence dominated by early-type galaxies. These red/quenched massive disk galaxies have recently gained great interest into their formation and origins. The…

Astrophysics of Galaxies · Physics 2022-04-06 Yingzhong Xu , Yu Luo , Xi Kang , Zhiyuan Li , Zongnan Li , Peng Wang , Noam Libeskind

Quenching, the cessation of star formation, is one of the most significant events in the life cycle of galaxies. We show here the first evidence that the Milky Way experienced a generalised quenching of its star formation at the end of its…

Astrophysics of Galaxies · Physics 2016-06-13 M. Haywood , M. D. Lehnert , P. Di Matteo , O. Snaith , M. Schultheis , D. Katz , A. Gomez

One key problem in astrophysics is understanding how and why galaxies switch off their star formation, building the quiescent population that we observe in the local Universe. From the GAMA and VIPERS surveys, we use spectroscopic indices…

Massive quiescent compact galaxies have been discovered at high redshifts, associated with rapid compaction and cessation of star formation (SF). In this work we set out to quantify the time-scales in which SF is quenched in compact…

The timescales for galaxy quenching offer clues to its underlying physical drivers. We investigate central galaxy quenching timescales in the IllustrisTNG 100-1 simulation, their evolution over time, and the pre-quenching properties of…

Astrophysics of Galaxies · Physics 2022-02-09 Dan Walters , Joanna Woo , Sara L. Ellison

We use the semi-analytic model developed by Henriques et al. (2015) to explore the origin of star formation history diversity for galaxies that lie at the centre of their dark matter haloes and have present-day stellar masses in the range…

Astrophysics of Galaxies · Physics 2016-04-01 Bryan A. Terrazas , Eric F. Bell , Bruno M. B. Henriques , Simon D. M. White

We study the dust content of massive ($\log(M_*/M_{\odot})\geq10.8$) quiescent galaxies (QGs) at redshifts $z=0.5-3$ to place constraints on the evolution of their cold interstellar medium (ISM) and thereby obtain insights into the…

Astrophysics of Galaxies · Physics 2025-10-22 Sylvia Adscheid , Benjamin Magnelli , Laure Ciesla , Daizhong Liu , Eva Schinnerer , Frank Bertoldi

The massive galaxy population above the characteristic Schechter mass M*~10^10.6 Msun contributes to about half of the total stellar mass in the local Universe. These massive galaxies usually reside in hot dark matter haloes above the…

We present a new analysis of the stellar mass function and morphology of recently-quenched galaxies (RQGs), whose star formation has been recently quenched for some reason. The COSMOS2015 catalog was exploited to select those galaxies at…

Astrophysics of Galaxies · Physics 2017-07-26 Akie Ichikawa , Yoshiki Matsuoka

The first few billion years of cosmic history witnessed the rapid emergence of the most massive galaxies, yet their true space density, baryon assembly pathways, and early quenching mechanisms remain poorly constrained. Current surveys lack…

Instrumentation and Methods for Astrophysics · Physics 2025-12-19 Mengyuan Xiao , Longji Bing , Guilaine Lagache , Miroslava Dessauges-Zavadsky , Olivier Ilbert , Benjamin Magnelli , Pascal A. Oesch