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ALMA Survey of Orion Planck Galactic Cold Clumps (ALMASOP). I. Detection of New Hot Corinos with the ACA

Authors :
Shih Ying Hsu
Mika Juvela
Leonardo Bronfman
Jinhua He
Sheng-Yuan Liu
Anthony Moraghan
Naomi Hirano
Woojin Kwon
Alessio Traficante
Qizhou Zhang
Dipen Sahu
Sheng-Li Qin
Somnath Dutta
Huei Ru Vivien Chen
Yi-Jehng Kuan
Mark G. Rawlings
Kee-Tae Kim
Jeong-Eun Lee
Yao-Lun Yang
Hsien Shang
Doug Johnstone
Archana Soam
Chin-Fei Lee
Mark Thompson
Gwanjeong Kim
Tie Liu
Chang Won Lee
Patricio Sanhueza
David Eden
Kai Syun Jhan
Ken'ichi Tatematsu
Yuefang Wu
Department of Physics
Source :
The Astrophysical Journal. 898:107
Publication Year :
2020
Publisher :
American Astronomical Society, 2020.

Abstract

We report the detection of four new hot corino sources, G211.47-19.27S, G208.68-19.20N1, G210.49-19.79W and G192.12-11.10 from a survey study of Planck Galactic Cold Clumps in the Orion Molecular Cloud Complex with the Atacama Compact Array (ACA). Three sources had been identified as low mass Class 0 protostars in the Herschel Orion Protostar Survey (HOPS). One source in the lambda Orionis region is firstly reported as a protostellar core. We have observed abundant complex organic molecules (COMs), primarily methanol but also other oxygen-bearing COMs (in G211.47-19.27S and G208.68-19.20N1) and the molecule of prebiotic interest NH2CHO (in G211.47-19.27S), signifying the presence of hot corinos. While our spatial resolution is not sufficient for resolving most of the molecular emission structure, the large linewidth and high rotational temperature of COMs suggest that they likely reside in the hotter and innermost region immediately surrounding the protostar. In G211.47-19.27S, the D/H ratio of methanol ([CH2DOH]/[CH3OH]) and the 12C/13C ratio of methanol ([CH3OH]/[13CH3OH]) are comparable to those of other hot corinos. Hydrocarbons and long carbon-chain molecules such as c-C3H2 and HCCCN are also detected in the four sources, likely tracing the outer and cooler molecular envelopes.<br />37 pages, 51 figures, to be published in ApJ

Details

ISSN :
15384357
Volume :
898
Database :
OpenAIRE
Journal :
The Astrophysical Journal
Accession number :
edsair.doi.dedup.....cebd9b2c06ae4caa491a88264026fa22
Full Text :
https://doi.org/10.3847/1538-4357/ab9f3a