The ALMA-PILS survey: First detections of ethylene oxide, acetone and propanal toward the low-mass protostar IRAS 16293-2422
J. M. Lykke, A. Coutens, J. K. J{\o}rgensen, M. H. D. van der Wiel, R., T. Garrod, H. S. P. M\"uller, P. Bjerkeli, T. L. Bourke, H. Calcutt, M. N., Drozdovskaya, C. Favre, E. C. Fayolle, S. K. Jacobsen, K. I. \"Oberg, M. V., Persson, E. F. van Dishoeck, S. F. Wampfler

TL;DR
This study reports the first detections of ethylene oxide, acetone, and propanal toward a low-mass protostar, revealing their coexistence in a compact region and providing insights into complex organic molecule formation in early stellar environments.
Contribution
It presents the first observational evidence of these molecules in a low-mass protostar, expanding understanding of organic chemistry in solar-type star formation.
Findings
Detected propanal, ethylene oxide, and acetone toward IRAS 16293-2422
All molecules originate from a compact region near the protostar
Observed abundance ratios are higher than chemical model predictions
Abstract
One of the open questions in astrochemistry is how complex organic and prebiotic molecules are formed. Aims. Our aim is to start the process of compiling an inventory of oxygen-bearing complex organic molecules toward the solar-type Class 0 protostellar binary IRAS16293-2422 from an unbiased spectral survey with ALMA (PILS). Here we focus on the new detections of ethylene oxide (c-CHO), acetone (CHCOCH), and propanal (CHCHO). Methods. With ALMA, we surveyed the spectral range from 329 to 363 GHz at 0.5 (60 AU diameter) resolution. Using a simple model for the molecular emission in LTE, the excitation temperatures and column densities of each species were constrained. Results. We successfully detect propanal (44 lines), ethylene oxide (20 lines) and acetone (186 lines) toward one component of the protostellar binary, IRAS16293B. The high resolution maps…
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