A cold accretion flow onto one component of a multiple protostellar system
Nadia M. Murillo, Ewine F. van Dishoeck, Alvaro Hacar, Daniel Harsono,, Jes K. J{\o}rgensen

TL;DR
This study uses ALMA observations to reveal cold gas accretion flows onto one component of a multiple protostellar system, highlighting preferential material delivery and its role in system evolution.
Contribution
It provides the first detailed observational evidence of cold accretion flows onto a specific protostar within a multiple system, using multi-line molecular data.
Findings
Cold gas accretion is directed toward IRAS16293 A but not B.
Different molecular distributions trace distinct outflow and accretion structures.
Accretion flows are cold, between 10 and 30 K, and extend from 6000 AU to 100 AU.
Abstract
Context: Gas accretion flows transport material from the cloud core onto the protostar. In multiple protostellar systems, it is not clear if the delivery mechanism is preferential or evenly distributed among the components. Aims: Gas accretion flows within IRAS16293 is explored out to 6000 AU. Methods: ALMA Band 3 observations of low- transitions of HNC, cyanopolyynes (HCN, HCN), and NH are used to probe the cloud core structure at ~100 AU resolution. Additional Band 3 archival data provide low- HCN and SiO lines. These data are compared with the corresponding higher- lines from the PILS Band 7 data for excitation analysis. The HNC/HCN ratio is used as a temperature tracer. Results: The low- transitions of HCN, HCN, HNC and NH trace extended and elongated structures from 6000 AU down to ~100 AU, without accompanying dust continuum…
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Taxonomy
TopicsAstrophysics and Star Formation Studies · Molecular Spectroscopy and Structure · Advanced Chemical Physics Studies
