Molecular Outflows From the Protocluster, Serpens South
Fumitaka Nakamura (NAOJ), Koji Sugitani (Nagoya City Univ.), Yoshito, Shimajiri (NRO), Takashi Tsukagoshi (Univ. of Tokyo), Aya E. Higuchi (NAO),, Shogo Nishiyama (Kyoto Univ.), Ryohei Kawabe (NRO), Michihiro Takami (ASIAA),, Jennifer L. Karr (ASIAA)

TL;DR
This study maps molecular outflows in the Serpens South protocluster, revealing their role in sustaining turbulence but not disrupting the cluster-forming gas, thus supporting ongoing star formation.
Contribution
First detailed CO and HCO+ mapping of outflows in Serpens South, linking outflow activity to turbulence maintenance in a cluster-forming region.
Findings
Outflows are crowded in the dense cluster-forming clump.
Outflow energy injection balances turbulence dissipation rate.
Outflows are insufficient to disrupt the entire clump.
Abstract
We present the results of CO () and HCO () mapping observations toward a nearby embedded cluster, Serpens South, using the ASTE 10 m telescope. Our CO () map reveals that many outflows are crowded in the dense cluster-forming clump that can be recognized as a HCO clump with a size of 0.2 pc and mass of 80 M. The clump contains several subfragments with sizes of 0.05 pc. By comparing the CO () map with the 1.1 mm dust continuum image taken by AzTEC on ASTE, we find that the spatial extents of the outflow lobes are sometimes anti-correlated with the distribution of the dense gas and some of the outflow lobes apparently collide with the dense gas. The total outflow mass, momentum, and energy are estimated at 0.6 , 8 km s, and 64 km s, respectively. The energy injection rate due…
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