Context. Aims. The long-term evolution of a circumstellar disk starting from its formation and ending in the T Tauri phase was simulated numerically with the purpose of studying the evolution of dust in the disk with distinct values of the viscous α-parameter and dust fragmentation velocity vfrag. Methods. We solved numerical hydrodynamics equations in the thin-disk limit, which were modified to include a dust component consisting of two parts: sub-micron-sized dust, and grown dust with a maximum radius ar. The former is strictly coupled to the gas, while the latter interacts with the gas through friction. Dust growth, dust self-gravity, and the conversion of small to grown dust were also considered. Results. We found that the process of du...
Context: Protoplanetary disks are observed to remain dust-rich for up to several million years. Theo...
Context. Understanding planetesimal formation is an essential first step towards understanding plane...
A key problem in protoplanetary disc evolution is understanding the efficiency of dust radial drift....
Aims. The central region of a circumstellar disk is difficult to resolve in global numerical simulat...
Aims. The central region of a circumstellar disk is difficult to resolve in global numerical simulat...
Context. Current models of the size- and radial evolution of dust in protoplanetary disks generally ...
Context. Current models of the size- and radial evolution of dust in protoplanetary disks generally ...
Context. Current models of the size- and radial evolution of dust in protoplanetary disks generally ...
Aims. We study the dynamics and growth of dust particles in circumstellar disks of different masses ...
Dust constitutes only about one percent of the mass of circumstellar disks, yet it is of crucial imp...
Context. The global size and spatial distribution of dust is an important ingredient in the structur...
Context. The global size and spatial distribution of dust is an important ingredient in the structur...
Aims. Dust plays a crucial role in the evolution of protoplanetary disks. We study the dynamics and ...
To form meter-sized pre-planetesimals in protoplanetary discs, dust aggregates have to decouple from...
To form meter-sized pre-planetesimals in protoplanetary discs, dust aggregates have to decouple from...
Context: Protoplanetary disks are observed to remain dust-rich for up to several million years. Theo...
Context. Understanding planetesimal formation is an essential first step towards understanding plane...
A key problem in protoplanetary disc evolution is understanding the efficiency of dust radial drift....
Aims. The central region of a circumstellar disk is difficult to resolve in global numerical simulat...
Aims. The central region of a circumstellar disk is difficult to resolve in global numerical simulat...
Context. Current models of the size- and radial evolution of dust in protoplanetary disks generally ...
Context. Current models of the size- and radial evolution of dust in protoplanetary disks generally ...
Context. Current models of the size- and radial evolution of dust in protoplanetary disks generally ...
Aims. We study the dynamics and growth of dust particles in circumstellar disks of different masses ...
Dust constitutes only about one percent of the mass of circumstellar disks, yet it is of crucial imp...
Context. The global size and spatial distribution of dust is an important ingredient in the structur...
Context. The global size and spatial distribution of dust is an important ingredient in the structur...
Aims. Dust plays a crucial role in the evolution of protoplanetary disks. We study the dynamics and ...
To form meter-sized pre-planetesimals in protoplanetary discs, dust aggregates have to decouple from...
To form meter-sized pre-planetesimals in protoplanetary discs, dust aggregates have to decouple from...
Context: Protoplanetary disks are observed to remain dust-rich for up to several million years. Theo...
Context. Understanding planetesimal formation is an essential first step towards understanding plane...
A key problem in protoplanetary disc evolution is understanding the efficiency of dust radial drift....