ATOMS: ALMA three-millimeter observations of massive star-forming regions - II. Compact objects in ACA observations and star formation scaling relations

Evans, Neal J.; Mardones, Diego; Li, Shang Huo; Lee, Chang Won

Abstract

We report studies of the relationships between the total bolometric luminosity (Lbol or LTIR) and the molecular line luminosities of J = 1 − 0 transitions of H13CN, H13CO+, HCN, and HCO+ with data obtained from ACA observations in the ‘ATOMS’ survey of 146 active Galactic star-forming regions. The correlations between Lbol and molecular line luminosities L´mol of the four transitions all appear to be approximately linear. Line emission of isotopologues shows as large scatters in Lbol–L´mol relations as their main line emission. The log(Lbol/L´mol) for different molecular line tracers have similar distributions. The Lbol-to-L´mol ratios do not change with galactocentric distances (RGC) and clump masses (Mclump). The molecular line luminosity ratios (HCN-to-HCO+, H13CN-to-H13CO+, HCN-to-H13CN, and HCO+-to-H13CO+) all appear constant against Lbol, dust temperature (Td), Mclump, and RGC. Our studies suggest that both the main lines and isotopologue lines are good tracers of the total masses of dense gas in Galactic molecular clumps. The large optical depths of main lines do not affect the interpretation of the slopes in star formation relations. We find that the mean star formation efficiency (SFE) of massive Galactic clumps in the ‘ATOMS’ survey is reasonably consistent with other measures of the SFE for dense gas, even those using very different tracers or examining very different spatial scales.

Más información

Título según WOS: ATOMS: ALMA three-millimeter observations of massive star-forming regions - II. Compact objects in ACA observations and star formation scaling relations
Título según SCOPUS: ATOMS: ALMA three-millimeter observations of massive star-forming regions – II. Compact objects in ACA observations and star formation scaling relations
Título de la Revista: Monthly Notices of the Royal Astronomical Society
Volumen: 496
Número: 3
Editorial: Oxford University Press
Fecha de publicación: 2020
Página final: 2835
Idioma: English
DOI:

10.1093/MNRAS/STAA1501

Notas: ISI, SCOPUS