arXiv · 1511.08567
Observations of Protostellar Outflow Feedback in Clustered Star Formation
Abstract
We discuss the role of protostellar outflow feedback in clustered star formation using the observational data of recent molecular outflow surveys toward nearby cluster-forming clumps. We found that for almost all clumps, the outflow momentum injection rate is significantly larger than the turbulence dissipation rate. Therefore, the outflow feedback is likely to maintain supersonic turbulence in the clumps. For less massive clumps such as B59, L1551, and L1641N, the outflow kinetic energy is comparable to the clump gravitational energy. In such clumps, the outflow feedback probably affects significantly the clump dynamics. On the other hand, for clumps with masses larger than about 200 M$_\odot$, the outflow kinetic energy is significantly smaller than the clump gravitational energy. Since the majority of stars form in such clumps, we conclude that outflow feedback cannot destroy the whole parent clump. These characteristics of the outflow feedback support the scenario of slow star formation.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Fumitaka Nakamura. 2015-11-27. Observations of Protostellar Outflow Feedback in Clustered Star Formation. https://doi.org/10.1051/eas%2F1575021
Cite the original work for its findings. Save a collection to share your selection of sources.