Star Formation and Feedback: A Molecular Outflow-Prestellar Core Interaction in L1689N
D. C. Lis, H. A. Wootten, M. Gerin, L. Pagani, E. Roueff, F.F.S van, der Tak, C. Vastel, and C.M. Walmsley

TL;DR
This study investigates the interaction between a prestellar core and a molecular outflow in L1689N using multi-instrument observations, revealing velocity changes, chemical signatures, and dust structures indicative of outflow influence.
Contribution
It provides detailed observational evidence of outflow-core interaction, including velocity shifts, chemical enhancements, and dust morphology, advancing understanding of star formation processes.
Findings
Velocity and line width variations indicate outflow interaction.
Detection of high deuteration levels and chemical tracers.
Identification of a compact dust core with specific physical properties.
Abstract
We present Herschel, ALMA Compact Array (ACA), and Caltech Submillimeter Observatory (CSO) observations of the prestellar core in L1689N, which has been suggested to be interacting with a molecular outflow driven by the nearby solar type protostar IRAS 16293-2422. This source is characterized by some of the highest deuteration levels seen in the interstellar medium. The change in the NH2D line velocity and width across the core provides clear evidence of an interaction with the outflow, traced by the high-velocity water emission. Quiescent, cold gas, characterized by narrow line widths is seen in the NE part of the core, while broader, more disturbed line profiles are seen in the W/SW part. Strong N2D+ and ND3 emission is detected with the ACA, extending S/SW from the peak of the single-dish NH2D emission. The ACA data also reveal the presence a compact dust continuum source, with a…
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