We calculate the chemical evolution of protoplanetary disks considering radial viscous accretion, vertical turbulent mixing, and vertical disk winds. We study the effects on the disk chemical structure when different models for the formation of molecular hydrogen on dust grains are adopted. Our gas-phase chemistry is extracted from the UMIST Database for Astrochemistry (Rate06) to which we have added detailed gas-grain interactions. We use our chemical model results to generate synthetic near- and mid-infrared local thermodynamic equilibrium line emission spectra and compare these with recent Spitzer observations. Our results show that if H2 formation on warm grains is taken into consideration, the H2O and OH abundances in the disk surface ...
Funding: EU FP7-2011 under Grant Agreement no. 284405 (I.K., W.F.T., and P.W).Context. Disks around ...
This is the first paper in a series where we study the influence of turbulent diffusion and advectiv...
We study the influence of transport processes on the chemical evolution of DM Tau-like protoplanetar...
We have developed a high-resolution combined physical and chemical model of a protoplanetary disk su...
We develop a simple iterative scheme to include vertical turbulent mixing and diffusion in PRODIMO t...
This dissertation presents a new model for calculating the chemistry of protoplanetary disks prior t...
Degree Awarded: Ph.D. Physics. The Catholic University of AmericaThis dissertation addresses several...
In this paper, we couple the dust evolution code two-pop-py with the thermochemical disk modelling c...
We present results from a model of the chemical evolution of protoplanetary disks. In our models, we...
Context. Near- to mid-infrared observations of molecular emission from protoplanetary disks show tha...
The volatile composition of a planet is determined by the inventory of gas and ice in the parent dis...
The gas-phase chemistry of water in protoplanetary disks is analyzed with a model based on X-ray hea...
Context. Near- to mid-infrared observations of molecular emission from protoplanetary disk...
Aims: To calculate chemistry and gas temperature of evolving protoplanetary disks with decreasing ma...
We report observations of resolved C_2H emission rings within the gas-rich protoplanetary disks of T...
Funding: EU FP7-2011 under Grant Agreement no. 284405 (I.K., W.F.T., and P.W).Context. Disks around ...
This is the first paper in a series where we study the influence of turbulent diffusion and advectiv...
We study the influence of transport processes on the chemical evolution of DM Tau-like protoplanetar...
We have developed a high-resolution combined physical and chemical model of a protoplanetary disk su...
We develop a simple iterative scheme to include vertical turbulent mixing and diffusion in PRODIMO t...
This dissertation presents a new model for calculating the chemistry of protoplanetary disks prior t...
Degree Awarded: Ph.D. Physics. The Catholic University of AmericaThis dissertation addresses several...
In this paper, we couple the dust evolution code two-pop-py with the thermochemical disk modelling c...
We present results from a model of the chemical evolution of protoplanetary disks. In our models, we...
Context. Near- to mid-infrared observations of molecular emission from protoplanetary disks show tha...
The volatile composition of a planet is determined by the inventory of gas and ice in the parent dis...
The gas-phase chemistry of water in protoplanetary disks is analyzed with a model based on X-ray hea...
Context. Near- to mid-infrared observations of molecular emission from protoplanetary disk...
Aims: To calculate chemistry and gas temperature of evolving protoplanetary disks with decreasing ma...
We report observations of resolved C_2H emission rings within the gas-rich protoplanetary disks of T...
Funding: EU FP7-2011 under Grant Agreement no. 284405 (I.K., W.F.T., and P.W).Context. Disks around ...
This is the first paper in a series where we study the influence of turbulent diffusion and advectiv...
We study the influence of transport processes on the chemical evolution of DM Tau-like protoplanetar...