Magnetic reconnection at a three-dimensional null point is the natural extension of the familiar two-dimensional X-point reconnection. A model is set up here for reconnection at a spiral null point, by solving the kinematic, steady, resistive magnetohydrodynamic equations in its vicinity. A steady magnetic field is assumed, as well as the existence of a localised diffusion region surrounding the null point. Outside the diffusion region the plasma and magnetic field move ideally. Particular attention is focussed on the way that the magnetic flux changes its connections as a result of the reconnection. The resultant plasma flows are found to be rotational in nature, as is the change in connections of the magnetic field lines
The behaviour of magnetic perturbations of an initially potential three-dimensional equilibrium magn...
A stationary model of three-dimensional magnetic reconnection in the absence of a null point is pres...
While theoretical models and simulations of magnetic reconnection often assume symmetry such that th...
Magnetic reconnection at a three-dimensional null point is the natural extension of the familiar two...
Magnetic reconnection at a three-dimensional null point is a natural extension of the familiar two-d...
Magnetic reconnection at a three-dimensional null point is the natural extension of the familiar two...
Magnetic reconnection at a three-dimensional null point is the natural extension of the familiar two...
The skeleton of an isolated null point in three dimensions consists of a 'spine curve' and a 'fan su...
Magnetic reconnection around three dimensional (3D) magnetic null points is the natural progression ...
Recent advances in theory and computational experiments have shown the need to refine the previous c...
Magnetic reconnection frequently occurs at and around magnetic null points. We derive exact expressi...
A stationary model of three-dimensional magnetic reconnection in the absence of a null point is pres...
The behaviour of magnetic perturbations of an initially potential three-dimensional equilibrium magn...
A stationary model of three-dimensional magnetic reconnection in the absence of a null point is pres...
While theoretical models and simulations of magnetic reconnection often assume symmetry such that th...
Magnetic reconnection at a three-dimensional null point is the natural extension of the familiar two...
Magnetic reconnection at a three-dimensional null point is a natural extension of the familiar two-d...
Magnetic reconnection at a three-dimensional null point is the natural extension of the familiar two...
Magnetic reconnection at a three-dimensional null point is the natural extension of the familiar two...
The skeleton of an isolated null point in three dimensions consists of a 'spine curve' and a 'fan su...
Magnetic reconnection around three dimensional (3D) magnetic null points is the natural progression ...
Recent advances in theory and computational experiments have shown the need to refine the previous c...
Magnetic reconnection frequently occurs at and around magnetic null points. We derive exact expressi...
A stationary model of three-dimensional magnetic reconnection in the absence of a null point is pres...
The behaviour of magnetic perturbations of an initially potential three-dimensional equilibrium magn...
A stationary model of three-dimensional magnetic reconnection in the absence of a null point is pres...
While theoretical models and simulations of magnetic reconnection often assume symmetry such that th...