Complex Organic Molecules in a Very Young Hot Corino, HOPS 373SW
Jeong-Eun Lee, Giseon Baek, Seokho Lee, Jae-Hong Jeong, Chul-Hwan Kim,, Yuri Aikawa, Gregory J. Herczeg, Doug Johnstone, and John J. Tobin

TL;DR
This study reports the detection of complex organic molecules in a very young hot corino, HOPS 373SW, revealing early-stage chemical characteristics and high deuteration levels, providing insights into surface chemistry before sublimation.
Contribution
First detailed ALMA spectra of a very young hot corino showing high deuteration and early chemical evolution, highlighting the initial stages of complex organic molecule formation.
Findings
High deuteration levels of methanol indicate early evolutionary stage.
Low CH3CN abundance suggests a chemically young hot corino.
Comparison with other objects demonstrates chemical evolution from envelope to disk.
Abstract
We present the spectra of Complex Organic Molecules (COMs) detected in HOPS 373SW with the Atacama Large Millimeter/submillimeter Array (ALMA). HOPS 373SW, which is a component of a protostellar binary with a separation of 1500 au, has been discovered as a variable protostar by the JCMT Transient monitoring survey with a modest ~30% brightness increase at submillimeter wavelengths. Our ALMA Target of Opportunity (ToO) observation at ~345 GHz for HOPS 373SW revealed extremely young chemical characteristics with strong deuteration of methanol. The dust continuum opacity is very high toward the source center, obscuring line emission from within 0.03 arcsec. The other binary component, HOPS 373NE, was detected only in C17O in our observation, implying a cold and quiescent environment. We compare the COMs abundances relative to CH3OH in HOPS 373SW with those of V883 Ori, which is an eruptive…
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Taxonomy
TopicsAstrophysics and Star Formation Studies · Molecular Spectroscopy and Structure · Spacecraft and Cryogenic Technologies
