Context. Radial transport of icy solid material from the cold outer disk to the warm inner disk is thought to be important for planet formation. However, the efficiency at which this happens is currently unconstrained. Efficient radial transport of icy dust grains could significantly alter the composition of the gas in the inner disk, enhancing the gas-phase abundances of the major ice constituents such as H2O and CO2.Aim. Our aim is to model the gaseous CO2 abundance in the inner disk and use this to probe the efficiency of icy dust transport in a viscous disk. From the model predictions, infrared CO2 spectra are simulated and features that could be tracers of icy CO2, and thus dust, radial transport efficiency are investigated.Methods. We...
In regions where stars form, variations in density and temperature can cause gas to freeze out onto ...
We present new observations with the Infrared Spectrograph on board the Spitzer Space Telescope of t...
In this paper, we couple the dust evolution code two-pop-py with the thermochemical disk modelling c...
Context. Radial transport of icy solid material from the cold outer disk to the warm inner disk is t...
The efficiency of radial transport of icy solid material from the outer disk to the inner disk is cu...
Context. The infrared ro-vibrational emission lines from organic molecules in the inner regions of p...
Context. Ice lines are suggested to play a significant role in grain growth and planetesimal formati...
CO is the most widely used gas tracer of protoplanetary disks. Its abundance is usually assumed to b...
Context. The total gas mass is one of the most fundamental properties of disks around young stars, b...
We present a synergic study of protoplanetary disks to investigate links between inner-disk gas mole...
Degree Awarded: Ph.D. Physics. The Catholic University of AmericaThis dissertation addresses several...
CO is thought to be the main reservoir of volatile carbon in protoplanetary disks, and thus the prim...
New observations with powerful infrared facilities, most notably JWST, will reveal the spectral sign...
CO is commonly used as a tracer of the total gas mass in both the interstellar medium and in protopl...
Recent high angular resolution observations of protoplanetary disks at different wavelengths have re...
In regions where stars form, variations in density and temperature can cause gas to freeze out onto ...
We present new observations with the Infrared Spectrograph on board the Spitzer Space Telescope of t...
In this paper, we couple the dust evolution code two-pop-py with the thermochemical disk modelling c...
Context. Radial transport of icy solid material from the cold outer disk to the warm inner disk is t...
The efficiency of radial transport of icy solid material from the outer disk to the inner disk is cu...
Context. The infrared ro-vibrational emission lines from organic molecules in the inner regions of p...
Context. Ice lines are suggested to play a significant role in grain growth and planetesimal formati...
CO is the most widely used gas tracer of protoplanetary disks. Its abundance is usually assumed to b...
Context. The total gas mass is one of the most fundamental properties of disks around young stars, b...
We present a synergic study of protoplanetary disks to investigate links between inner-disk gas mole...
Degree Awarded: Ph.D. Physics. The Catholic University of AmericaThis dissertation addresses several...
CO is thought to be the main reservoir of volatile carbon in protoplanetary disks, and thus the prim...
New observations with powerful infrared facilities, most notably JWST, will reveal the spectral sign...
CO is commonly used as a tracer of the total gas mass in both the interstellar medium and in protopl...
Recent high angular resolution observations of protoplanetary disks at different wavelengths have re...
In regions where stars form, variations in density and temperature can cause gas to freeze out onto ...
We present new observations with the Infrared Spectrograph on board the Spitzer Space Telescope of t...
In this paper, we couple the dust evolution code two-pop-py with the thermochemical disk modelling c...