Null collapse is an implosive process whereby MHD waves focus their energy in the vicinity of a null point, forming a current sheet and initiating magnetic reconnection. We consider, for the first time, the case of collapsing 3D magnetic null points in nonlinear, resistive MHD using numerical simulation, exploring key physical aspects of the system as well as performing a detailed parameter study. We find that within a particular plane containing the 3D null, the plasma and current density enhancements resulting from the collapse are quantitatively and qualitatively as per the 2D case in both the linear and nonlinear collapse regimes. However, the scaling with resistivity of the 3D reconnection rate - which is a global quantity - is found t...
The role of null-point reconnection in a three-dimensional numerical magnetohydrodynamic (MHD) model...
The nature of the evolution of the magnetic field, and of current sheet formation, at three-dimensio...
Context. The magnetic field in many astrophysical plasmas, for example in the solar corona, is known...
Null collapse is an implosive process whereby MHD waves focus their energy in the vicinity of a null...
Null collapse is an implosive process whereby MHD waves focus their energy in the vicinity of a null...
Here we detail the dynamic evolution of localized reconnection regions about 3D magnetic null points...
The formation of current singularities at line-tied two- and three-dimensional (2D and 3D, respectiv...
Context. The highly dynamical, complex nature of the solar atmosphere naturally implies the pres...
The nature of current sheet formation in the vicinity of three-dimensional (3D) magnetic null points...
The problem of how the Sun's corona is heated is of central importance to solar physics research. In...
Implosive formation of current sheets is a fundamental plasma process. Previous studies focused on t...
Three dimensional magnetic null points are now accepted as important topological features at which m...
Context. The magnetic field in many astrophysical plasmas, for example in the solar corona, is known...
The role of null-point reconnection in a three-dimensional numerical magnetohydrodynamic (MHD) model...
The nature of the evolution of the magnetic field, and of current sheet formation, at three-dimensio...
Context. The magnetic field in many astrophysical plasmas, for example in the solar corona, is known...
Null collapse is an implosive process whereby MHD waves focus their energy in the vicinity of a null...
Null collapse is an implosive process whereby MHD waves focus their energy in the vicinity of a null...
Here we detail the dynamic evolution of localized reconnection regions about 3D magnetic null points...
The formation of current singularities at line-tied two- and three-dimensional (2D and 3D, respectiv...
Context. The highly dynamical, complex nature of the solar atmosphere naturally implies the pres...
The nature of current sheet formation in the vicinity of three-dimensional (3D) magnetic null points...
The problem of how the Sun's corona is heated is of central importance to solar physics research. In...
Implosive formation of current sheets is a fundamental plasma process. Previous studies focused on t...
Three dimensional magnetic null points are now accepted as important topological features at which m...
Context. The magnetic field in many astrophysical plasmas, for example in the solar corona, is known...
The role of null-point reconnection in a three-dimensional numerical magnetohydrodynamic (MHD) model...
The nature of the evolution of the magnetic field, and of current sheet formation, at three-dimensio...
Context. The magnetic field in many astrophysical plasmas, for example in the solar corona, is known...