A 3mm chemical exploration of small organics in Class I YSOs
Romane Le Gal, Karin I. \"Oberg, Jane Huang, Charles J. Law,, Fran\c{c}ois M\'enard, Bertrand Lefloch, Charlotte Vastel, Ana, Lopez-Sepulcre, C\'ecile Favre, Eleonora Bianchi, Cecilia Ceccarelli

TL;DR
This study presents the first 3mm spectral survey of seven Class I YSOs in Taurus, revealing chemical diversity and providing insights into their gas-phase composition, fractionation, and physical conditions during early star formation stages.
Contribution
It offers the first detailed chemical analysis of Class I YSOs using 3mm spectroscopy, highlighting chemical differentiation linked to physical parameters.
Findings
Detected 13 small molecules and isotopologues in Class I YSOs.
Found chemical differentiation correlated with physical properties.
Provided constraints on gas-phase C/N/O ratios and fractionation.
Abstract
There is mounting evidence that the composition and structure of planetary systems are intimately linked to their birth environments. During the past decade, several spectral surveys probed the chemistry of the earliest stages of star formation and of late planet-forming disks. However, very little is known about the chemistry of intermediate protostellar stages, i.e. Class I Young Stellar Objects (YSOs), where planet formation may have already begun. We present here the first results of a 3mm spectral survey performed with the IRAM-30m telescope to investigate the chemistry of a sample of seven Class I YSOs located in the Taurus star-forming region. These sources were selected to embrace the wide diversity identified for low-mass protostellar envelope and disk systems. We present detections and upper limits of thirteen small () C, N, O, and S carriers - namely CO,…
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