Water distribution in shocked regions of the NGC1333-IRAS4A protostellar outflow
G. Santangelo, B. Nisini, C. Codella, A. Lorenzani, U. A. Yildiz, S., Antoniucci, P. Bjerkeli, S. Cabrit, T. Giannini, L. Kristensen, R. Liseau, J., C. Mottram, M. Tafalla, E. F. van Dishoeck

TL;DR
This study maps water distribution in shocked regions of the NGC1333-IRAS4A outflow, revealing two distinct temperature components and their spatial characteristics, advancing understanding of shock-related water emission in protostellar outflows.
Contribution
First spatially resolved analysis of hot and warm water components in a protostellar outflow using Herschel data, linking them to jet impact and ambient gas compression.
Findings
Identified compact hot (~1000 K) and extended warm (~300-500 K) water components.
Estimated H2O/H2 abundance ratios for both components.
Resolved spatially the two temperature components previously observed.
Abstract
We present the study of the H2O spatial distribution at two bright shocked regions along IRAS4A, one of the strongest H2O emitters among the Class 0 outflows. We obtained Herschel-PACS maps of the IRAS4A outflow and HIFI observations of two shocked positions. The largest HIFI beam of 38 arcsec at 557 GHz was mapped in several key water lines with different upper energy levels, to reveal possible spatial variations of the line profiles. We detect four H2O lines and CO (16-15) at the two selected positions. In addition, transitions from related outflow and envelope tracers are detected. Different gas components associated with the shock are identified in the H2O emission. In particular, at the head of the red lobe of the outflow, two distinct gas components with different excitation conditions are distinguished in the HIFI emission maps: a compact component, detected in the ground-state…
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