The formation of a thin current sheet in a magnetic quasiseparatrix layer (QSL) is investigated by means of numerical simulation using a simplified ideal, low-beta, MHD model. The initial configuration and driving boundary conditions are relevant to phenomena observed in the solar corona and were studied earlier by Aulanier et al. [Astron. Astrophys. 444, 961 (2005)]. In extension to that work, we use the technique of adaptive mesh refinement (AMR) to significantly enhance the local spatial resolution of the current sheet during its formation, which enables us to follow the evolution into a later stage. Our simulations are in good agreement with the results of Aulanier et al. up to the calculated time in that work. In a later phase, we obse...
Dynamics of the magnetotail plasma sheet (PS) features nonlinear structures on two totally differen...
The integration of kinetic effects into macroscopic numerical models is currently of great interest ...
To contribute to the understanding of heating and dynamic activity in boundary-driven, low-beta plas...
The mechanism for the formation of thin current sheets in magnetotail-like magnetic fields is invest...
International audienceIn 3D magnetic field configurations, quasi-separatrix layers (QSLs) are define...
Current sheet formation and intensification can be studied by compressing an initially uniform or we...
Aims. Solar photospheric footpoint motions can produce strong, localised currents in the corona. A d...
Aims: Solar photospheric footpoint motions can produce strong, localised currents in the corona. A d...
In this thesis we investigate current sheets in the solar corona. The well known 1D model for the te...
In 3D magnetic field configurations, quasi-separatrix layers (QSLs) are defined as volumes in which ...
Temporal evolution of a current sheet with initial perturbations is studied by using the three-dimen...
International audienceThin current sheets represent important and puzzling sites of magnetic energy ...
International audienceCurrent sheets are structures that can be formed at the boundaries of differen...
Current sheet formation and intensification can be studied by compressing a initially uniform or wea...
Dissipation of magnetic energy in the corona requires the creation of Very fine scale-lengths becaus...
Dynamics of the magnetotail plasma sheet (PS) features nonlinear structures on two totally differen...
The integration of kinetic effects into macroscopic numerical models is currently of great interest ...
To contribute to the understanding of heating and dynamic activity in boundary-driven, low-beta plas...
The mechanism for the formation of thin current sheets in magnetotail-like magnetic fields is invest...
International audienceIn 3D magnetic field configurations, quasi-separatrix layers (QSLs) are define...
Current sheet formation and intensification can be studied by compressing an initially uniform or we...
Aims. Solar photospheric footpoint motions can produce strong, localised currents in the corona. A d...
Aims: Solar photospheric footpoint motions can produce strong, localised currents in the corona. A d...
In this thesis we investigate current sheets in the solar corona. The well known 1D model for the te...
In 3D magnetic field configurations, quasi-separatrix layers (QSLs) are defined as volumes in which ...
Temporal evolution of a current sheet with initial perturbations is studied by using the three-dimen...
International audienceThin current sheets represent important and puzzling sites of magnetic energy ...
International audienceCurrent sheets are structures that can be formed at the boundaries of differen...
Current sheet formation and intensification can be studied by compressing a initially uniform or wea...
Dissipation of magnetic energy in the corona requires the creation of Very fine scale-lengths becaus...
Dynamics of the magnetotail plasma sheet (PS) features nonlinear structures on two totally differen...
The integration of kinetic effects into macroscopic numerical models is currently of great interest ...
To contribute to the understanding of heating and dynamic activity in boundary-driven, low-beta plas...