Collapse of a molecular cloud core to stellar densities: the radiative impact of stellar core formation on the circumstellar disc
arXiv:1003.3034 · doi:10.1111/j.1745-3933.2010.00839.x
Abstract
We present results from the first three-dimensional radiation hydrodynamical calculations to follow the collapse of a molecular cloud core beyond the formation of the stellar core. We find the energy released by the formation of the stellar core, within the optically-thick first hydrostatic core, is comparable to the binding energy of the disc-like first core. This heats the inner regions of the disc, drives a shock wave through the disc, dramatically decreases the accretion rate on to the stellar core, and launches a temporary bipolar outflow perpendicular to the rotation axis that travels in excess of 50 AU into the infalling envelope. This outburst may assist the young protostar in launching a conventional magnetic jet. Furthermore, if these events are cyclic, they may provide a mechanism for intense bursts of accretion separated by long periods of relatively quiescent accretion which can potentially solve both the protostellar luminosity problem and the apparent age spread of stars in young clusters. Such outbursts may also provide a formation mechanism for the chondrules found in meteorites, with the outflow transporting them to large distances in the circumstellar disc.
Accepted by MNRAS Letters. 6 pages, 4 figures. Animations can be found at http://www.astro.ex.ac.uk/people/mbate/Animations/Stellar/
References in corpus (5)
- SPLASH: An interactive visualisation tool for Smoothed Particle Hydrodynamics simulations
- The Burst Mode of Protostellar Accretion
- The impact of magnetic fields on single and binary star formation
- Radiative transfer and the energy equation in SPH simulations of star formation
- Second Core Formation and High Speed Jets: Resistive MHD Nested Grid Simulations
Cited by in corpus (56)
- Stellar, brown dwarf and multiple star properties from a radiation hydrodynamical simulation of star cluster formation
- The burst mode of accretion and disk fragmentation in the early embedded stages of star formation
- Internal Gravity Waves in Massive Stars: Angular Momentum Transport
- Radiation Magnetohydrodynamic Simulations of Protostellar Collapse: Protostellar Core Formation
- Radiation Magnetohydrodynamic Simulations of Protostellar Collapse: Non-Ideal Magnetohydrodynamic Effects and Early Formation of Circumstellar Disks
- Effect of Magnetic Braking on the Circumstellar Disk Formation in a Strongly Magnetized Cloud
- TreeCol: a novel approach to estimating column densities in astrophysical simulations
- Recurrent Planet Formation and Intermittent Protostellar Outflows Induced by Episodic Mass Accretion
- Collapse of a molecular cloud core to stellar densities: stellar core and outflow formation in radiation magnetohydrodynamics simulations
- Internal Gravity Waves Modulate the Apparent Misalignment of Exoplanets around Hot Stars
- Effects of Ohmic and ambipolar diffusion on the formation and evolution of the first cores, protostars and circumstellar discs
- Conditions for Circumstellar Disk Formation: Effects of Initial Conditions and Sink Treatment
- The Origin and Formation of the Circumstellar Disk
- Decoupling of Magnetic Fields in Collapsing Protostellar Envelopes and Disk Formation and Fragmentation
- Low-Metallicity Star Formation : Prestellar Collapse and Protostellar Accretion in the Spherical Symmetry
- The statistical properties of stars and their dependence on metallicity: the effects of opacity
- Protostellar birth with ambipolar and ohmic diffusion
- Towards a population synthesis model of self-gravitating disc fragmentation and tidal downsizing II: The effect of fragment-fragment interactions
- Collapse of a molecular cloud core to stellar densities: the formation and evolution of pre-stellar discs
- The role of magnetic fields in the formation of protostellar discs
- Exposed Long-lifetime First-core: A New Model of First Cores Based on Radiation Hydrodynamics
- On the stability of radiation-pressure-dominated cavities
- Impact of Protostellar Outflow on Star Formation: Effects of Initial Cloud Mass
- The collapse of a molecular cloud core to stellar densities using radiation non-ideal magnetohydrodynamics
- An improved sink particle algorithm for SPH simulations
- Disks and Outflows in CO Rovibrational Emission from Embedded, Low-Mass Young Stellar Objects
- Survival of interstellar molecules to prestellar dense core collapse and early phases of disk formation
- Gas Giants in Hot Water: Inhibiting Giant Planet Formation and Planet Habitability in Dense Star Clusters Through Cosmic Time
- What is the role of stellar radiative feedback in setting the stellar mass spectrum?
- Direct Imaging of a Compact Molecular Outflow from a Very Low-luminosity Object; L1521F-IRS
- Combining radiative transfer and diffuse interstellar medium physics to model star formation
- Chemistry in the First Hydrostatic Core Stage By Adopting Three-Dimensional Radiation Hydrodynamic Simulations
- Non-ideal magnetohydrodynamics vs turbulence I: Which is the dominant process in protostellar disc formation?
- Hall effect-driven formation of gravitationally unstable discs in magnetized molecular cloud cores
- The impact of X-rays on molecular cloud fragmentation and the IMF
- Star formation near an obscured AGN: Variations in the initial mass function
- Effects of stellar density on the photoevaporation of circumstellar discs
- On the fragmentation boundary in magnetised self-gravitating discs
- Self-gravitating disc candidates around massive young stars
- Non-ideal magnetohydrodynamics vs turbulence II: Which is the dominant process in stellar core formation?
- The Properties of Prestellar Discs in Isolated and Multiple Prestellar Systems
- Extremely Dense Cores associated with Chandra Sources in Ophiuchus A: Forming Brown Dwarfs Unveiled?
- Different Modes of Star Formation: Gravitational Collapse of Magnetically Subcritical Cloud
- Spatially Resolving Substructures within the Massive Envelope around an Intermediate-mass Protostar: MMS 6/OMC-3
- Growth of Massive Disk and Early Disk Fragmentation in the Primordial Star Formation
- Mixing is easy: New insights for cosmochemical evolution from pre-stellar core collapse
- Sink particle radiative feedback in smoothed particle hydrodynamics models of star formation
- A Lower Angular Momentum Limit for Self-Gravitating Protostellar Disc Fragmentation
- Formation of low mass protostars and their circumstellar disks
- A turbulent origin for the complex envelope kinematics in the young low-mass core Per-Bolo 58
- Radiation Magnetohydrodynamic Simulations of Protostellar Collapse: Low-Metallicity Environments
- Insights into the first and second hydrostatic core stages from numerical simulations
- Turn up the light: Radiative efficiency of protostars at birth
- Can planet formation resolve the dust budget crisis in high redshift galaxies?
- Recent Developments in Simulations of Low-mass Star Formation
- Relaxation of protostellar accretion shocks using the smoothed particle hydrodynamics