ALMA Cycle 1 Observations of the HH46/47 Molecular Outflow: Structure, Entrainment and Core Impact
Yichen Zhang, Hector G. Arce, Diego Mardones, Sylvie Cabrit, Michael, M. Dunham, Guido Garay, Alberto Noriega-Crespo, Stella S. R. Offner,, Alejandro C. Raga, Stuartt A. Corder

TL;DR
This study uses high-resolution ALMA observations to analyze the HH46/47 molecular outflow, revealing detailed structures, correcting for optical depth effects, and providing new insights into outflow dynamics, entrainment processes, and core dispersal.
Contribution
It presents the first detailed ALMA-based analysis of the HH46/47 outflow, including optical depth corrections and evidence for complex outflow structures and entrainment mechanisms.
Findings
Outflow mass, momentum, and energy are significantly higher after optical depth correction.
Detection of multiple shells indicating jet bow-shock events.
Evidence of rotation and infall in the circumstellar envelope.
Abstract
We present ALMA Cycle 1 observations of the HH46/47 molecular outflow using combined 12m array and ACA observations. The improved angular resolution and sensitivity of our multi-line maps reveal structures that help us study the entrainment process in much more detail and allow us to obtain more precise estimates of outflow properties than previous observations. We use 13CO(1-0) and C18O(1-0) emission to correct for the 12CO(1-0) optical depth to accurately estimate the outflow mass, momentum and kinetic energy. This correction increases the estimates of the mass, momentum and kinetic energy by factors of about 9, 5 and 2, respectively, with respect to estimates assuming optically thin emission. The new 13CO and C18O data also allow us to trace denser and slower outflow material than that traced by the 12CO maps, and they reveal an outflow cavity wall at very low velocities (as low as…
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