Episodic accretion in focus: revealing the environment of FU Orionis-type stars
arXiv:2101.09204 · doi:10.1017/S1743921319002060
Abstract
The earliest phases of star formation are characterised by intense mass accretion from the circumstellar disk to the central star. One group of young stellar objects, the FU Orionis-type stars exhibit accretion rate peaks accompanied by bright eruptions. The occurrence of these outbursts might solve the luminosity problem of protostars, play a key role in accumulating the final star mass, and have a significant effect on the parameters of the envelope and the disk. In the framework of the Structured Accretion Disks ERC project, we are conducting a systematic investigation of these sources with millimeter interferometry to examine whether they represent normal young stars in exceptional times or they are unusual objects. Our results show that FU Orionis-type stars can be similar to both Class I and Class II systems and may be in a special evolutionary phase between the two classes with their infall-driven episodic eruptions being the main driving force of the transition.
4 pages, 2 figures
References in corpus (8)
- The Burst Mode of Protostellar Accretion
- Imaging the water-snow line during a protostellar outburst
- Variable protostellar accretion with episodic bursts
- The Thermal Regulation of Gravitational Instabilities in Protoplanetary Disks III. Simulations with Radiative Cooling and Realistic Opacities
- Spitzer-IRS Observations of FU Orionis Objects
- Evolution of dust and ice features around FU Orionis objects
- The ALMA early science view of FUor/EXor objects - V: continuum disc masses and sizes
- Cold CO gas in the envelopes of FU Orionis-type young eruptive stars