The feedback of atomic jets from embedded protostars in NGC 1333
arXiv:1608.06131 · doi:10.1051/0004-6361/201629179
Abstract
Star-formation feedback onto the parent cloud is conventionally examined through the study of molecular outflows. Little is however known on the effect that atomic ejecta, tracing fast shocks, can have on the global cloud properties. In this study we employ Herschel/PACS [OI] and [CII] spectral line maps of the NGC 1333 star-forming region to assess the relative influence of atomic jets onto the star-formation process. Atomic line maps are compared against molecular outflow tracers and atomic ejecta are associated to individual driving sources. We study the detailed morphology and velocity distribution of [OI] line using channel and line-centroid maps and derive the momentum, energy, and mass flux for all the bipolar jets traced by [OI] line emission. We find that the line-centroid maps can trace velocity structures down to 5 km s which is a factor of 20 beyond the nominal velocity resolution reached by Herschel/PACS. These maps reveal an unprecedented degree of details that assist significantly in the association and characterization of jets and outflows. Comparisons of the dynamical and kinematical properties shows that [OI] momentum accounts for only 1% of the momentum carried by the large scale CO outflows but the energy released through the jets corresponds to 50 - 100% of the energy released in outflows. The estimated ratios of the jet to the outflow momenta and energies are consistent with the results of two-component, nested jet/outflow simulations, where jets are associated to episodic accretion events. Under this scenario, the energy from atomic jets to the cloud is as important as the energy output from outflows in maintaining turbulence and dissipating the cloud gas.
14 pages, 8 figures, 3 tables. Accepted for publication in A&A
References in corpus (7)
- The Burst Mode of Protostellar Accretion
- The XMM-Newton Extended Survey of the Taurus Molecular Cloud (XEST)
- The Mass Distribution and Lifetime of Prestellar Cores in Perseus, Serpens, and Ophiuchus
- Discovery of superthermal hydroxyl (OH) in the HH211 outflow
- [OI]63micron jets in class 0 sources detected by Herschel
- The VLA Nascent Disk And Multiplicity (VANDAM) Survey of Perseus Protostars. Resolving the Sub-Arcsecond Binary System in NGC 1333 IRAS2A
- Protostellar Jets Enclosed by Low-velocity Outflows
Cited by in corpus (8)
- Water in star-forming regions (WISH): Physics and chemistry from clouds to disks as probed by Herschel spectroscopy
- Connecting the Scales: Large Area High-resolution Ammonia Mapping of NGC 1333
- Proper motions of collimated jets from intermediate-mass protostars in the Carina Nebula
- Feedback of molecular outflows from protostars in NGC 1333, revealed by Herschel and Spitzer spectro-imaging observations
- Evolution of the atomic component in protostellar outflows
- Proper Motions and Shock Wave Dynamics in the HH 7-11 Stellar Jet
- Illuminating a tadpole's metamorphosis II: observing the on-going transformation with ALMA
- The factors that influence protostellar multiplicity I: Gas temperature, density, and mass in Perseus with Nobeyama