Understanding the collisional outcomes of dust aggregates and their dependence on the material properties of the constituting particles is of great importance for understanding planet formation. Recent numerical simulations have revealed that interparticle tangential friction plays a crucial role in energy dissipation during collisions between porous dust aggregates, but the importance of friction for the collisional growth of dust aggregates remains poorly understood. Here we demonstrate the effects of interparticle tangential friction on the collisional growth of dust aggregates. We performed numerical simulations of collisions between equal-mass porous dust aggregates consisting of cohesive and frictionless spheres. We changed the collis...
The coagulation of dust aggregates occurs in various astrophysical environments. Each one is charac...
Context. The coagulation of microscopic dust into planetesimals is the first step towards the format...
The coagulation of dust aggregates occurs in various astrophysical environments. Each one is charact...
Understanding the collisional outcomes of dust aggregates and their dependence on the material prope...
Context. Collisions between dust particles may lead to agglomerate growth or fragmentation, dependin...
Context. Collisional growth of dust aggregates is an essential process in forming planetes...
We carry out three-dimensional Smoothed Particle Hydrodynamics simulations of spherical homogeneous ...
Context. Collisions between porous dust aggregates are crucial for the evolution of protoplanetary d...
Collisions of mm-size dust aggregates play a crucial role in the early phases of planet formation. I...
Context. The growth processes from protoplanetary dust to planetesimals are not fully understood. La...
Context. The growth processes from protoplanetary dust to planetesimals are not fully understood. La...
Context. A highly favoured mechanism of planetesimal formation is collisional growth. Single dust gr...
Over the past years the processes involved in the growth of planetesimals have extensively been stud...
Context. Sticking of colliding dust particles through van der Waals forces is the first stage in the...
Context. The sticking of micron-sized dust particles caused by surface forces within circumstellar d...
The coagulation of dust aggregates occurs in various astrophysical environments. Each one is charac...
Context. The coagulation of microscopic dust into planetesimals is the first step towards the format...
The coagulation of dust aggregates occurs in various astrophysical environments. Each one is charact...
Understanding the collisional outcomes of dust aggregates and their dependence on the material prope...
Context. Collisions between dust particles may lead to agglomerate growth or fragmentation, dependin...
Context. Collisional growth of dust aggregates is an essential process in forming planetes...
We carry out three-dimensional Smoothed Particle Hydrodynamics simulations of spherical homogeneous ...
Context. Collisions between porous dust aggregates are crucial for the evolution of protoplanetary d...
Collisions of mm-size dust aggregates play a crucial role in the early phases of planet formation. I...
Context. The growth processes from protoplanetary dust to planetesimals are not fully understood. La...
Context. The growth processes from protoplanetary dust to planetesimals are not fully understood. La...
Context. A highly favoured mechanism of planetesimal formation is collisional growth. Single dust gr...
Over the past years the processes involved in the growth of planetesimals have extensively been stud...
Context. Sticking of colliding dust particles through van der Waals forces is the first stage in the...
Context. The sticking of micron-sized dust particles caused by surface forces within circumstellar d...
The coagulation of dust aggregates occurs in various astrophysical environments. Each one is charac...
Context. The coagulation of microscopic dust into planetesimals is the first step towards the format...
The coagulation of dust aggregates occurs in various astrophysical environments. Each one is charact...