A necklace of dense cores in the high-mass star forming region G35.20-0.74N: ALMA observations
\'A. S\'anchez-Monge, M.T. Beltr\'an, R. Cesaroni, S. Etoka, D. Galli,, M.S.N. Kumar, L. Moscadelli, T. Stanke, F.F.S. van der Tak, S. Vig, C.M., Walmsley, K.-S. Wang, H. Zinnecker, D. Elia, S. Molinari, E. Schisano

TL;DR
This study uses ALMA observations to analyze the dense core structure and dynamics in the high-mass star forming region G35.20-0.74N, revealing a filamentary fragmentation pattern, hot cores, and rotating disks indicative of massive star formation.
Contribution
First detailed ALMA study of G35.20N revealing filament fragmentation, hot cores, and Keplerian disks in a high-mass star forming region.
Findings
Elongated dust structure fragmented into cores with masses 1-10 Msun.
Detected hot cores with temperatures around 200 K and complex organic molecules.
Identified Keplerian disks with central masses 4-18 Msun and associated outflows.
Abstract
The present study aims at characterizing the massive star forming region G35.20N, which is found associated with at least one massive outflow and contains multiple dense cores, one of them recently found associated with a Keplerian rotating disk. We used ALMA to observe the G35.20N region in the continuum and line emission at 350 GHz. The observed frequency range covers tracers of dense gas (e.g. H13CO+, C17O), molecular outflows (e.g. SiO), and hot cores (e.g. CH3CN, CH3OH). The ALMA 870 um continuum emission map reveals an elongated dust structure (0.15 pc long and 0.013 pc wide) perpendicular to the large-scale molecular outflow detected in the region, and fragmented into a number of cores with masses 1-10 Msun and sizes 1600 AU. The cores appear regularly spaced with a separation of 0.023 pc. The emission of dense gas tracers such as H13CO+ or C17O is extended and coincident with…
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