Grain growth across protoplanetary discs: 10-micron silicate feature versus millimetre slope
arXiv:1004.0158 · doi:10.1051/0004-6361/200913150
Abstract
Young stars are formed within dusty discs. The grains in the disc are originally of the same size as interstellar dust. Models predict that these grains will grow in size through coagulation. Observations of the silicate features at micron wavelengths are consistent with growth to micron sizes whereas the slope of the SED at longer wavelengths traces growth up to mm sizes. We here look for a correlation between these two grain growth indicators. A large sample of T-Tauri and Herbig-Ae/Be stars was observed with the Spitzer Space Telescope at 5-13 micron; a subsample was observed at mm wavelengths. We complement this subsample with data from the literature to maximise the overlap between micron and mm observations and search for correlations. Synthetic spectra are produced to determine which processes may produce the dust evolution. Dust disc masses in the range <1 to 7 x 10^-4 MSun are obtained. Most sources have a mm spectral slope consistent with grain growth. There is a tentative correlation between the 10-micron silicate feature and the mm slope of the SED. The observed sources seem to be grouped per star-forming region in the micron-vs-mm diagram. The modelling results show that the 10-micron feature becomes flatter and subsequently the mm slope becomes shallower. Grain size distributions shallower than that of the ISM and/or bright central stars are required to explain specific features. Settling of larger grains towards the disc midplane affects the 10-micron feature, but hardly the mm slope. The tentative correlation between the strength of the 10-micron feature and the mm slope suggests that the inner and outer disc evolve simultaneously. Dust with a mass dominated by mm-sized grains is required to explain the shallowest mm slopes. Other processes besides grain growth may also be responsible for the removal of small grains.
23 pages, 14 figures, accepted by A&A
References in corpus (17)
- Coagulation, fragmentation and radial motion of solid particles in protoplanetary disks
- Dust Properties of Protoplanetary Disks in the Taurus-Auriga Star Forming Region from Millimeter Wavelengths
- The Stellar Population of the Chamaeleon I Star-Forming Region
- Radiative transfer in very optically thick circumstellar disks
- Spectro-astrometric imaging of molecular gas within protoplanetary disk gaps
- Episodic formation of cometary material in the outburst of a solar-like young star
- The Spitzer c2d Survey of Large, Nearby, Interstellar Clouds. XI. Lupus Observed With IRAC and MIPS
- A VLT/NACO Survey for Triple and Quadruple Systems among Visual Pre-Main Sequence Binaries
- Probing the Dust and Gas in the Transitional Disk of CS Cha with Spitzer
- C2D Spitzer-IRS spectra of disks around T Tauri stars. IV. Crystalline silicates
- Investigating grain growth in disks around southern T Tauri stars at millimetre wavelengths
- Large grains in disks around young stars: ATCA observations of WW Cha, RU Lup, and CS Cha
- Coagulation of small grains in disks: the influence of residual infall and initial small-grain content
- Size-sorting dust grains in the surface layers of protoplanetary disks
- Star formation in the Vela Molecular Ridge. Large scale mapping of cloud D in the mm continuum
- Searching for coronal radio emission from protostars using Very-Long-Baseline Interferometry
- 10 m interferometry of disks around young stars
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