2019A&A...628A..23A


Query : 2019A&A...628A..23A

2019A&A...628A..23A - Astronomy and Astrophysics, volume 628A, 23-23 (2019/8-1)

Imaging the molecular interstellar medium in a gravitationally lensed star-forming galaxy at z = 5.7.

APOSTOLOVSKI Y., ARAVENA M., ANGUITA T., SPILKER J., WEISS A., BETHERMIN M., CHAPMAN S.C., CHEN C.-C., CUNNINGHAM D., DE BREUCK C., DONG C., HAYWARD C.C., HEZAVEH Y., JARUGULA S., LITKE K., MA J., MARRONE D.P., NARAYANAN D., REUTER C.A., ROTERMUND K. and VIEIRA J.

Abstract (from CDS):


Aims. We present and study spatially resolved imaging obtained with the Atacama Large Millimeter/submillimeter Array (ALMA) of multiple 12CO(J=6-5, 8-7, and 9-8) and two H2O(202-111 and 211-202) emission lines and cold dust continuum toward the gravitationally lensed dusty star-forming galaxy SPT 0346-52 at z=5.656.
Methods. Using a visibility-domain source-plane reconstruction we probe the structure and dynamics of the different components of the interstellar medium (ISM) in this galaxy down to scales of 1kpc in the source plane. Results. Measurements of the intrinsic sizes of the different CO emission lines indicate that the higher J transitions trace more compact regions in the galaxy. Similarly, we find smaller dust continuum intrinsic sizes with decreasing wavelength, based on observations at rest frame 130, 300, and 450µm. The source shows significant velocity structure, and clear asymmetry where an elongated structure is observed in the source plane with significant variations in their reconstructed sizes. This could be attributed to a compact merger or turbulent disk rotation. The differences in velocity structure through the different line tracers, however, hint at the former scenario in agreement with previous [CII] line imaging results. Measurements of the CO line ratios and magnifications yield significant variations as a function of velocity, suggesting that modeling of the ISM using integrated values could be misinterpreted. Modeling of the ISM in SPT 0346-52 based on delensed fluxes indicates a highly dense and warm medium, qualitatively similar to that observed in high-redshift quasar hosts.

Abstract Copyright: © ESO 2019

Journal keyword(s): galaxies: high-redshift - galaxies: ISM - galaxies: star formation - ISM: molecules

VizieR on-line data: <Available at CDS (J/A+A/628/A23): list.dat fits/*>

Simbad objects: 15

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Number of rows : 15
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2023
#notes
1 NGC 253 SyG 00 47 33.134 -25 17 19.68   8.03   6.94 8.1 ~ 3261 2
2 M 77 GiP 02 42 40.7091669408 -00 00 47.859690204 9.70 9.61 8.87 10.1 9.9 ~ 4499 2
3 QSO B0332-403 BLL 03 34 13.65448823 -40 08 25.3979928 18.54 18.35 17.87 17.5   ~ 309 1
4 ACT-S J034640-520505 G 03 46 41.190 -52 05 05.50           ~ 36 0
5 PKS J0411-5149 Rad 04 11 37.2 -51 49 23           ~ 4 1
6 PMN J0519-4546a Rad 05 19 38.7 -45 46 03           ~ 8 0
7 M 82 IG 09 55 52.430 +69 40 46.93 9.61 9.30 8.41     ~ 5767 6
8 QSO B1202-074 QSO 12 05 23.1360370080 -07 42 32.759842896     17.5     ~ 373 5
9 Mrk 231 Sy1 12 56 14.2341182928 +56 52 25.238373852   14.68 13.84     ~ 1956 3
10 NGC 4945 Sy2 13 05 27.279 -49 28 04.44   9.31 14.40 7.55   ~ 1436 2
11 NAME Centaurus A Sy2 13 25 27.61521044 -43 01 08.8050291   8.18 6.84 6.66   ~ 4399 3
12 IC 4553 SyG 15 34 57.22396 +23 30 11.6084   14.76 13.88     ~ 2918 4
13 NAME SMM J16359+6612.4 LeG 16 35 54.10 +66 12 23.8           ~ 29 0
14 NGC 6240 Sy2 16 52 58.9 +02 24 03   14.31 13.37     ~ 1616 2
15 NAME Galactic Center reg 17 45 39.60213 -29 00 22.0000           ~ 13893 0

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2023.09.26-02:17:33

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