Millimeter continuum imaging of protoplanetary disks reveals the distribution of solid particles and the presence of substructures (gaps and rings) beyond 5-10 au, while infrared (IR) spectra provide access to abundances of gaseous species at smaller disk radii. Building on recent observational findings of an anti-correlation between the inner disk water luminosity and outer dust disk radius, we aim here at investigating the dynamics of icy solids that drift from the outer disk and sublimate their ice inside the snow line, enriching the water vapor that is observed in the IR. We use a volatile-inclusive disk evolution model to explore a range of conditions (gap location, particle size, disk mass, and α viscosity) under which gaps in the out...
Inside-out planet formation (IOPF) proposes that the abundant systems of close-in Super-Earths and M...
Close-in super-Earths are the most abundant exoplanets known. It has been hypothesized that they for...
We investigate the radial infall of ice pebbles in a protoplanetary disk, and how these tend to end ...
Substructures in protoplanetary disks can act as dust traps that shape the radial distribution of pe...
Previous analyses of mid-infrared water spectra from young protoplanetary disks observed with the Sp...
We present a synergic study of protoplanetary disks to investigate links between inner-disk gas mole...
We present a new velocity-resolved survey of 2.9 μm spectra of hot H_2O and OH gas emission from pro...
abstract: The composition of planets and their volatile contents are intimately connected to the str...
We present deep Herschel-PACS spectroscopy of far-infrared water lines from a sample of four protopl...
Previous analyses of mid-infrared water spectra from young protoplanetary disks observed with the Sp...
We present an observational reconstruction of the radial water vapor content near the surface of the...
We report a detection of water vapor in the protoplanetary disk around DoAr 44 with the Texas Echelo...
Inside-Out Planet Formation (IOPF) proposes that the abundant systems of close-in Super-Earths and M...
Inside-Out Planet Formation (IOPF) proposes that the abundant systems of close-in Super-Earths and M...
International audienceContext. Transition disks are circumstellar disks that show evidence of a dust...
Inside-out planet formation (IOPF) proposes that the abundant systems of close-in Super-Earths and M...
Close-in super-Earths are the most abundant exoplanets known. It has been hypothesized that they for...
We investigate the radial infall of ice pebbles in a protoplanetary disk, and how these tend to end ...
Substructures in protoplanetary disks can act as dust traps that shape the radial distribution of pe...
Previous analyses of mid-infrared water spectra from young protoplanetary disks observed with the Sp...
We present a synergic study of protoplanetary disks to investigate links between inner-disk gas mole...
We present a new velocity-resolved survey of 2.9 μm spectra of hot H_2O and OH gas emission from pro...
abstract: The composition of planets and their volatile contents are intimately connected to the str...
We present deep Herschel-PACS spectroscopy of far-infrared water lines from a sample of four protopl...
Previous analyses of mid-infrared water spectra from young protoplanetary disks observed with the Sp...
We present an observational reconstruction of the radial water vapor content near the surface of the...
We report a detection of water vapor in the protoplanetary disk around DoAr 44 with the Texas Echelo...
Inside-Out Planet Formation (IOPF) proposes that the abundant systems of close-in Super-Earths and M...
Inside-Out Planet Formation (IOPF) proposes that the abundant systems of close-in Super-Earths and M...
International audienceContext. Transition disks are circumstellar disks that show evidence of a dust...
Inside-out planet formation (IOPF) proposes that the abundant systems of close-in Super-Earths and M...
Close-in super-Earths are the most abundant exoplanets known. It has been hypothesized that they for...
We investigate the radial infall of ice pebbles in a protoplanetary disk, and how these tend to end ...