The aim of the present paper is to investigate the spatial structure of a protoplanetary disc whose dynamics is governed by magnetorotational turbulence. We perform a series of local 3D chemo-radiative MHD simulations located at different radii of a disc which is twice as massive as the standard minimum mass solar nebula of Hayashi (1981). The ionisation state of the disc is calculated by including collisional ionisation, stellar X-rays, cosmic rays and the decay of radionuclides as ionisation sources, and by solving a simplified chemical network which includes the effect of the absorption of free charges by µm-sized dust grains. In the region where the ionisation is too low to assure good coupling between matter and magnetic fields, a non-...
International audienceContext. The planet-forming region of protoplanetary disks is cold, dense, and...
International audienceContext. The planet-forming region of protoplanetary disks is cold, dense, and...
International audienceContext. The planet-forming region of protoplanetary disks is cold, dense, and...
International audiencePlanets form in the gaseous and dusty disks orbiting young stars. These protop...
International audiencePlanets form in the gaseous and dusty disks orbiting young stars. These protop...
International audiencePlanets form in the gaseous and dusty disks orbiting young stars. These protop...
International audienceProtoplanetary discs are made of gas and dust orbiting a young star. They are ...
International audienceProtoplanetary discs are made of gas and dust orbiting a young star. They are ...
International audienceProtoplanetary discs are made of gas and dust orbiting a young star. They are ...
Aims. Our aim is to study the thermal and dynamical evolution of protoplanetary discs in global simu...
International audienceProtoplanetary discs are made of gas and dust orbiting a young star. They are ...
International audienceProtoplanetary discs are made of gas and dust orbiting a young star. They are ...
International audienceContext. The planet-forming region of protoplanetary disks is cold, dense, and...
Aims. Our aim is to study the thermal and dynamical evolution of protoplanetary discs in global simu...
International audienceAims. Our aim is to study the thermal and dynamical evolution of protoplanetar...
International audienceContext. The planet-forming region of protoplanetary disks is cold, dense, and...
International audienceContext. The planet-forming region of protoplanetary disks is cold, dense, and...
International audienceContext. The planet-forming region of protoplanetary disks is cold, dense, and...
International audiencePlanets form in the gaseous and dusty disks orbiting young stars. These protop...
International audiencePlanets form in the gaseous and dusty disks orbiting young stars. These protop...
International audiencePlanets form in the gaseous and dusty disks orbiting young stars. These protop...
International audienceProtoplanetary discs are made of gas and dust orbiting a young star. They are ...
International audienceProtoplanetary discs are made of gas and dust orbiting a young star. They are ...
International audienceProtoplanetary discs are made of gas and dust orbiting a young star. They are ...
Aims. Our aim is to study the thermal and dynamical evolution of protoplanetary discs in global simu...
International audienceProtoplanetary discs are made of gas and dust orbiting a young star. They are ...
International audienceProtoplanetary discs are made of gas and dust orbiting a young star. They are ...
International audienceContext. The planet-forming region of protoplanetary disks is cold, dense, and...
Aims. Our aim is to study the thermal and dynamical evolution of protoplanetary discs in global simu...
International audienceAims. Our aim is to study the thermal and dynamical evolution of protoplanetar...
International audienceContext. The planet-forming region of protoplanetary disks is cold, dense, and...
International audienceContext. The planet-forming region of protoplanetary disks is cold, dense, and...
International audienceContext. The planet-forming region of protoplanetary disks is cold, dense, and...