How to Detect the Signatures of Self-Gravitating Circumstellar Discs with the Atacama Large Millimetre/sub-millimetre Array
arXiv:1409.2243 · doi:10.1093/mnras/stu1584
Abstract
In this paper we present simulated Atacama Large Millimetre/sub-millimetre Array (ALMA) observations of self-gravitating circumstellar discs with different properties in size, mass and inclination, located in four of the most extensively studied and surveyed star-forming regions. Starting from a Smoothed Particle Hydrodynamics (SPH) simulation and representative dust opacities, we have initially constructed maps of the expected emission at sub-mm wavelengths of a large sample of discs with different properties. We have then simulated realistic observations of discs as they may appear with ALMA using the Common Astronomy Software Application ALMA simulator. We find that, with a proper combination of antenna configuration and integration time, the spiral structure characteristic of self-gravitating discs is readily detectable by ALMA over a wide range of wavelengths at distances comparable to TW Hydrae (pc), Taurus - Auriga and Ophiucus (pc) star-forming regions. However, for discs located in Orion complex (pc) only the largest discs in our sample (outer radius of 100 au) show a spatially resolved structure while the smaller ones (outer radius of 25 au) are characterized by a spiral structure that is not conclusively detectable with ALMA.
12 pages, 10 figures
References in corpus (7)
- Smoothed Particle Hydrodynamics and Magnetohydrodynamics
- Characterising the Gravitational Instability in Cooling Accretion Discs
- Grain growth in the envelopes and disks of Class I protostars
- Planetesimal formation via fragmentation in self-gravitating protoplanetary discs
- Spiral arms in the disk of HD 142527 from CO emission lines with ALMA
- Molecular Line Emission from Massive Protostellar Disks: Predictions for ALMA and the EVLA
- Tracing large-scale structures in circumstellar disks with ALMA
Cited by in corpus (6)
- Spiral Density Waves in a Young Protoplanetary Disk
- Asymmetric features in the protoplanetary disk MWC758
- A Triple Protostar System Formed via Fragmentation of a Gravitationally Unstable Disk
- A "Rosetta Stone" for protoplanetary disks: The synergy of multi-wavelength observations
- Self-gravitating disc candidates around massive young stars
- One-armed spirals in locally isothermal, radially structured self-gravitating discs