Context. Dust particles evolve in size and lattice structure in protoplanetary disks, due to coagulation, fragmentation and crystallization, and are radially and vertically mixed in disks due to turbulent diffusion and wind/radiation pressure forces. Aims. This paper aims at determining the mineralogical composition and size distribution of the dust grains in planet forming regions of disks around a statistical sample of 58 T Tauri stars observed with Spitzer/IRS as part of the Cores to Disks (c2d) Legacy Program. Methods. We present a spectral decomposition model, named “B2C”, that reproduces the IRS spectra over the full spectral range (5–35 μm). The model assumes two dust populations: a warm component responsib...
International audienceUnderstanding how disks dissipate is essential to studies of planet formation....
International audienceWe have identified four circumstellar disks with a deficit of dust emission fr...
Understanding how disks dissipate is essential to studies of planet formation. However, identifying ...
Context. Dust particles evolve in size and lattice structure in protoplanetary disks, due to coagula...
Context. Dust particles evolve in size and lattice structure in protoplanetary disks, due to coagula...
International audienceAims: Dust grains in the planet-forming regions around young stars are expecte...
Aims. Dust grains in the planet-forming regions around young stars are expected to be heavily proces...
Aims. Dust grains in the planet-forming regions around young stars are expected to be heavily proces...
Aims. Dust grains in the planet-forming regions around young stars are expected to be heavily proces...
Aims. We investigate the mineralogy and dust processing in the circumbinary discs of binary post-AGB...
International audienceInfrared ~5-35 μm spectra for 40 solar mass T Tauri stars and 7 intermediate-m...
We present Spitzer infrared observations to constrain disc and dust evolution in young T Tauri star...
Infrared ~5-35 mum spectra for 40 solar mass T Tauri stars and 7 intermediate-mass Herbig Ae stars w...
Understanding how disks dissipate is essential to studies of planet formation. However, identifying ...
We have obtained Spitzer Space Telescope Infrared Spectrograph (IRS) 5.5-35 μm spectra of 59 main-se...
International audienceUnderstanding how disks dissipate is essential to studies of planet formation....
International audienceWe have identified four circumstellar disks with a deficit of dust emission fr...
Understanding how disks dissipate is essential to studies of planet formation. However, identifying ...
Context. Dust particles evolve in size and lattice structure in protoplanetary disks, due to coagula...
Context. Dust particles evolve in size and lattice structure in protoplanetary disks, due to coagula...
International audienceAims: Dust grains in the planet-forming regions around young stars are expecte...
Aims. Dust grains in the planet-forming regions around young stars are expected to be heavily proces...
Aims. Dust grains in the planet-forming regions around young stars are expected to be heavily proces...
Aims. Dust grains in the planet-forming regions around young stars are expected to be heavily proces...
Aims. We investigate the mineralogy and dust processing in the circumbinary discs of binary post-AGB...
International audienceInfrared ~5-35 μm spectra for 40 solar mass T Tauri stars and 7 intermediate-m...
We present Spitzer infrared observations to constrain disc and dust evolution in young T Tauri star...
Infrared ~5-35 mum spectra for 40 solar mass T Tauri stars and 7 intermediate-mass Herbig Ae stars w...
Understanding how disks dissipate is essential to studies of planet formation. However, identifying ...
We have obtained Spitzer Space Telescope Infrared Spectrograph (IRS) 5.5-35 μm spectra of 59 main-se...
International audienceUnderstanding how disks dissipate is essential to studies of planet formation....
International audienceWe have identified four circumstellar disks with a deficit of dust emission fr...
Understanding how disks dissipate is essential to studies of planet formation. However, identifying ...