2018ApJ...860..103S


Query : 2018ApJ...860..103S

2018ApJ...860..103S - Astrophys. J., 860, 103-103 (2018/June-3)

Molecular gas contents and scaling relations for massive, passive galaxies at intermediate redshifts from the LEGA-C survey.

SPILKER J., BEZANSON R., BARISIC I., BELL E., LAGOS C.D.P., MASEDA M., MUZZIN A., PACIFICI C., SOBRAL D., STRAATMAN C., VAN DER WEL A., VAN DOKKUM P., WEINER B., WHITAKER K., WILLIAMS C.C. and WU P.-F.

Abstract (from CDS):

A decade of study has established that the molecular gas properties of star-forming galaxies follow coherent scaling relations out to z ∼ 3, suggesting remarkable regularity of the interplay between molecular gas, star formation, and stellar growth. Passive galaxies, however, are expected to be gas-poor and therefore faint, and thus little is known about molecular gas in passive galaxies beyond the local universe. Here we present deep Atacama Large Millimeter/submillimeter Array observations of CO(2-1) emission in eight massive (Mstar ∼ 1011 M) galaxies at z ∼ 0.7 selected to lie a factor of 3-10 below the star-forming sequence at this redshift, drawn from the Large Early Galaxy Astrophysics Census survey. We significantly detect half the sample, finding molecular gas fractions <=0.1. We show that the molecular and stellar rotational axes are broadly consistent, arguing that the molecular gas was not accreted after the galaxies became quiescent. We find that scaling relations extrapolated from the star-forming population overpredict both the gas fraction and gas depletion time for passive objects, suggesting the existence of either a break or large increase in scatter in these relations at low specific star formation rate. Finally, we show that the gas fractions of the passive galaxies we have observed at intermediate redshifts are naturally consistent with evolution into local, massive early-type galaxies by continued low-level star formation, with no need for further gas accretion or dynamical stabilization of the gas reservoirs in the intervening 6 billion years.

Abstract Copyright: © 2018. The American Astronomical Society. All rights reserved.

Journal keyword(s): galaxies: evolution - galaxies: high-redshift - galaxies: ISM

Simbad objects: 12

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Number of rows : 12
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 QSO J0854+2006 BLL 08 54 48.8749846272 +20 06 30.639583620   15.91 15.43 15.56   ~ 2327 1
2 ICRF J094857.3+002225 Sy1 09 48 57.32005819 +00 22 25.5596984   18.85 18.61 18.17   ~ 318 2
3 COSMOS2015 674209 rG 09 59 07.29 +02 19 05.7 24.77 24.09 22.45 21.634 20.450 ~ 17 0
4 COSMOS2015 699500 G 10 00 12.42 +02 21 21.9 24.13 23.77 22.73 22.27 21.148 ~ 13 0
5 COSMOS 2030981 G 10 00 13.77 +02 19 37.1 24.18 23.65 22.66 21.896 20.995 ~ 13 0
6 COSMOS 2007564 G 10 00 13.88 +02 25 38.1 25.89 25.01 23.35 22.50 21.264 ~ 16 0
7 NAME COSMOS Field reg 10 00 28.60 +02 12 21.0           ~ 2972 0
8 SDSS J100035.54+023104.5 AGN 10 00 35.54 +02 31 04.3 25.13 24.06 22.34 21.542 20.407 ~ 20 0
9 SDSS J100104.42+020437.1 AGN 10 01 04.435 +02 04 37.25 24.55 23.83 22.37 21.518 20.474 ~ 22 0
10 COSMOS2015 814950 G 10 01 05.453 +02 32 03.70 27.68 24.98 23.09 22.34 21.056 ~ 14 0
11 COSMOS2015 477699 G 10 01 42.87 +02 01 21.9 24.40 24.08 23.16 22.62 21.560 ~ 9 0
12 ICRF J105829.6+013358 Sy1 10 58 29.60520810 +01 33 58.8237454   18.74 18.28 16.68   ~ 774 2

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