2020ApJ...892..147S


Query : 2020ApJ...892..147S

2020ApJ...892..147S - Astrophys. J., 892, 147-147 (2020/April-1)

Oversized gas clumps in an extremely metal-poor molecular cloud revealed by ALMA's parsec-scale maps.

SHI Y., WANG J., ZHANG Z.-Y., ZHANG Q., GAO Y., ZHOU L., GU Q., QIU K., XIA X.-Y., HAO C.-N. and CHEN Y.

Abstract (from CDS):

Metals are thought to have profound effects on the internal structures of the molecular clouds in which stars are born. The absence of metals is expected to prevent gas from efficient cooling and fragmentation in theory. However, this effect has not yet been observed in low-metallicity environments, such as in the early universe and local dwarf galaxies, because of the lack of high-spatial-resolution maps of gas. We carried out Atacama Large Millimeter/submillimeter Array observations of the carbon monoxide (CO) J = 2-1 emission line at 1.4 parsec resolutions of a molecular cloud in DDO 70 at 7% solar metallicity, the most metal-poor galaxy currently known with a CO detection. In total, five clumps have been identified and they are found to more or less follow Larson's law. Since the CO emission exists in regions with visual extinction AV around 1.0, we converted this AV to the gas-mass surface density using a gas-to-dust ratio of 4594 ± 2848 for DDO 70. We found that the CO clumps in DDO 70 exhibit significantly larger (on average four times) sizes than those at the same gas-mass surface densities in the massive star formation regions of the Milky Way. The existence of such large clumps appears to be consistent with theoretical expectations that gas fragmentation in low-metallicity clouds is suppressed. While our observation is only for one cloud in the galaxy, if it is representative, the above result implies suppressed gas fragmentation during the cloud collapse and star formation in the early universe.

Abstract Copyright: © 2020. The American Astronomical Society. All rights reserved.

Journal keyword(s): Giant molecular clouds - Dwarf irregular galaxies - Interstellar medium

Nomenclature: Fig. 2, Table 2: [SWZ2020] clump-N (Nos 1-5).

Simbad objects: 17

goto Full paper

goto View the references in ADS

Number of rows : 17
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 NAME SMC G 00 52 38.0 -72 48 01   2.79 2.2     ~ 10592 1
2 NAME LMC G 05 23 34.6 -69 45 22     0.4     ~ 16618 1
3 QSO J0854+2006 BLL 08 54 48.8749846272 +20 06 30.639583620   15.91 15.43 15.56   ~ 2229 1
4 [SWZ2020] clump-5 MoC 09 59 58.019 +05 19 52.42           ~ 1 0
5 [SWZ2020] clump-1 MoC 09 59 58.270 +05 19 47.88           ~ 1 0
6 [SWZ2020] clump-4 MoC 09 59 58.336 +05 19 44.72           ~ 1 0
7 [SWZ2020] clump-3 MoC 09 59 58.343 +05 19 45.62           ~ 1 0
8 [SWZ2020] clump-2 MoC 09 59 58.344 +05 11 24.00           ~ 1 0
9 NAME Sextans B H2G 10 00 00.8217342072 +05 20 09.533389560 12.77 12.25 11.89 11.71   ~ 513 0
10 QSO J1008+0621 BLL 10 08 00.81616040 +06 21 21.2160257 17.61 17.17 17.85 16.73   ~ 98 1
11 QSO B1034-293 QSO 10 37 16.07974265 -29 34 02.8134977   16.46 16.46 17.54   ~ 311 1
12 4C 01.28 BLL 10 58 29.60520810 +01 33 58.8237454   18.74 18.28 16.68   ~ 736 2
13 GRS G308.60 +00.60 HII 13 39.9 -61 45           ~ 100 0
14 NGC 6334 HII 17 20 53 -36 07.9           ~ 657 0
15 NGC 6822 G 19 44 56.199 -14 47 51.29   18 8.1     ~ 1515 0
16 NAME Cyg X Cld 20 28 41 +41 10.2           ~ 763 1
17 NGC 7538 OpC 23 13 37 +61 30.0           ~ 857 1

To bookmark this query, right click on this link: simbad:objects in 2020ApJ...892..147S and select 'bookmark this link' or equivalent in the popup menu


2023.03.21-08:46:57

© Université de Strasbourg/CNRS

    • Contact