2017A&A...605A..81D


Query : 2017A&A...605A..81D

2017A&A...605A..81D - Astronomy and Astrophysics, volume 605A, 81-81 (2017/9-1)

Molecular gas properties of a lensed star-forming galaxy at z ∼ 3.6: a case study.

DESSAUGES-ZAVADSKY M., ZAMOJSKI M., RUJOPAKARN W., RICHARD J., SKLIAS P., SCHAERER D., COMBES F., EBELING H., RAWLE T.D., EGAMI E., BOONE F., CLEMENT B., KNEIB J.-P., NYLAND K. and WALTH G.

Abstract (from CDS):

We report on the galaxy MACSJ0032-arc at zCO=3.6314 discovered during the Herschel Lensing snapshot Survey of massive galaxy clusters, and strongly lensed by the cluster MACS J0032.1+1808. The successful detections of its rest-frame ultraviolet (UV), optical, far-infrared (FIR), millimeter, and radio continua, and of its CO emission enable us to characterize, for the first time at such a high redshift, the stellar, dust, and molecular gas properties of a compact star-forming galaxy with a size smaller than 2.5kpc, a fairly low stellar mass of 4.8+0.5–1.0x109M, and a moderate IR luminosity of 4.8+1.2–0.6x1011L. By combining the stretching effect of the lens with the high angular resolution imaging of the CO(1-0) line emission and the radio continuum at 5GHz, we find that the bulk of the molecular gas mass and star formation seems to be spatially decoupled from the rest-frame UV emission. About 90% of the total star formation rate is undetected at rest-frame UV wavelengths because of severe obscuration by dust, but is seen through the thermal FIR dust emission and the radio synchrotron radiation. The observed CO(4-3) and CO(6-5) lines demonstrate that high-J transitions, at least up to J=6, remain excited in this galaxy, whose CO spectral line energy distribution resembles that of high-redshift submm galaxies, even though the IR luminosity of MACSJ0032-arc is ten times lower. This high CO excitation is possibly due to the compactness of the galaxy. We find evidence that this high CO excitation has to be considered in the balance when estimating the CO-to-H2 conversion factor. Indeed, the respective CO-to-H2 conversion factors as derived from the correlation with metallicity and the FIR dust continuum can only be reconciled if excitation is accounted for. The inferred depletion time of the molecular gas in MACSJ0032-arc supports the decrease in the gas depletion timescale of galaxies with redshift, although to a lesser degree than predicted by galaxy evolution models. Instead, the measured molecular gas fraction as high as 60-79% in MACSJ0032-arc favors the continued increase in the gas fraction of galaxies with redshift as expected, despite the plateau observed between z∼1.5 and z∼2.5.

Abstract Copyright: © ESO, 2017

Journal keyword(s): cosmology: observations - gravitational lensing: strong - galaxies: high-redshift - ISM: molecules - galaxies: evolution - galaxies: evolution

Nomenclature: [DZR2017] MACSJ0032-arc N=1. Fig. 1, Table 1: [DZR2017] MACSJ0032-arc A (Nos A-F).

Simbad objects: 9

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Number of rows : 9
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 [DZR2017] MACS J0032-arc LeG 00 32 07.776 +18 06 47.80           ~ 4 0
2 MCS J0032.1+1808 ClG 00 32 09.380 +18 06 56.17           ~ 7 0
3 NGC 253 SyG 00 47 33.134 -25 17 19.68   8.03   6.94 8.1 ~ 3335 2
4 NAME Magellanic Clouds GrG 03 00 -71.0           ~ 7062 0
5 M 82 AGN 09 55 52.430 +69 40 46.93 9.61 9.30 8.41     ~ 5857 6
6 NAME Antennae IG 12 01 53.170 -18 52 37.92           ~ 1691 0
7 NGC 6240 Sy2 16 52 58.9 +02 24 03   14.31 13.37     ~ 1637 2
8 NAME Cosmic Eye G 21 35 12.730 -01 01 42.90           ~ 90 0

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