Evolution of Protostellar Outflow around Low-mass Protostar
arXiv:1302.4176 · doi:10.1093/mnras/stt291
Abstract
The evolution of protostellar outflow is investigated with resistive magneto-hydrodynamic nested-grid simulations that cover a wide range of spatial scales (\sim 1AU - 1pc). We follow cloud evolution from the pre-stellar core stage until the infalling envelope dissipates long after the protostar formation. We also calculate protostellar evolution to derive protostellar luminosity with time-dependent mass accretion through a circumstellar disk. The protostellar outflow is driven by the first core prior to protostar formation and is directly driven by the circumstellar disk after protostar formation. The opening angle of the outflow is large in the Class 0 stage. A large fraction of the cloud mass is ejected in this stage, which reduces the star formation efficiency to \sim 50%. After the outflow breaks out from the natal cloud, the outflow collimation is gradually improved in the Class I stage. The head of the outflow travels more than \sim 10^5AU in \sim 10^5 yr. The outflow momentum, energy and mass derived in our calculations agree well with observations. In addition, our simulations show the same correlations among outflow momentum flux, protostellar luminosity and envelope mass as those in observations. These correlations differ between Class 0 and I stages, which is explained by different evolutionary stages of the outflow; in the Class 0 stage, the outflow is powered by the accreting mass and acquires its momentum from the infalling envelope; in the Class I stage, the outflow enters the momentum-driven snow-plough phase. Our results suggest that protostellar outflow should determine the final stellar mass and significantly affect the early evolution of low-mass protostars.
35 pages, 17 figures, Accepted for publication in MNRAS. For high resolution figures see http://jupiter.geo.kyushu-u.ac.jp/machida/arxiv/outflow.pdf
References in corpus (11)
- The Burst Mode of Protostellar Accretion
- The Evolution of Outflow-Envelope Interactions in Low-Mass Protostars
- Magnetic processes in a collapsing dense core. I Accretion and Ejection
- A 0.2 solar mass protostar with a Keplerian disk in the very young L1527 IRS system
- Magnetic Fields and Rotations of Protostars
- Radiation Feedback and Fragmentation in Massive Protostellar Cores
- Second Core Formation and High Speed Jets: Resistive MHD Nested Grid Simulations
- Radiation Magnetohydrodynamics Simulation of Proto-Stellar Collapse: Two-Component Molecular Outflow
- Exposed Long-lifetime First-core: A New Model of First Cores Based on Radiation Hydrodynamics
- Highly Collimated Jets and Wide-Angle Outflows in HH46/47: New Evidence from Spitzer IR Images
- Entrainment Mechanisms for Outflows in the L1551 Star-Forming Region
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- Radiation Magnetohydrodynamic Simulations of Protostellar Collapse: Non-Ideal Magnetohydrodynamic Effects and Early Formation of Circumstellar Disks
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- The role of magnetic fields in the formation of protostellar discs
- Observations of Infalling and Rotational Motions on a 1,000-AU Scale around 17 Class 0 and 0/I Protostars: Hints of Disk Growth and Magnetic Braking?
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- Chemical and Physical Picture of IRAS 16293-2422 Source B at a Sub-arcsecond Scale Studied with ALMA
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- Synthetic Observations of Magnetic Fields in Protostellar Cores
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- Rotating Bullets from A Variable Protostar
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- Implementation of dust particles in three-dimensional magnetohydrodynamics simulation: Dust dynamics in a collapsing cloud core
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- Protostellar Outflows: a window to the past
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- Can High-velocity Protostellar Jets Help to Drive Low-velocity Outflow?
- CSO CO(2-1) and Spitzer IRAC Observations of a Bipolar Outflow in High-mass Star-forming Region IRAS 22506+5944
- Can Protostellar Outflows Set Stellar Masses?
- Environmental Effects of Star-Forming Cores on Mass Accretion Rate
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- Exploring the 100 au Scale Structure of the Protobinary System NGC 2264 CMM3 with ALMA
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