The problem of dynamic, three-dimensional magnetic reconnection is considered. Analytic “fan current” solutions are derived by superposing plane-wave disturbances on magnetic X-point equilibria. The localization of the wave produces a strong current sheet containing the neutral point. It is shown that the classical rate of resistive dissipation in the sheet, namely Wn~n1/2, represents the slowest possible energy-loss rate for the disturbance. The conditions required for fast coronal reconnection are then discussed. It is pointed out that significant “flare-like” energy release may be possible under physically realizable conditions. Moreover, the small length scales associated with the current sheet widths of order ∆x~n1/2 suggest that condi...
The planar magnetic reconnection problem for viscous, resistive plasmas is addressed. We show that s...
We investigate the dynamical relaxation of a disturbed X-type magnetic neutral point in a periodic g...
Here we detail the dynamic evolution of localised reconnection regions about three-dimensional (3D) ...
The problem of dynamic, three-dimensional magnetic reconnection is considered. Analytic “fan current...
The problem of incompressible, nonlinear magnetic reconnection in three-dimensional "open" geometrie...
The ability of three-dimensional magnetic “spine” and “fan” reconnection solutions to provide flarel...
The ability of three-dimensional magnetic “ “ spine ÏÏ and “ “ fan ÏÏ reconnection solutions to prov...
The power output of flux pile-up magnetic reconnection is known to be determined by the total hydrom...
We consider the linear and nonlinear evolution of disturbed magnetic X-type neutral points. The prob...
The phenomena of steady-state magnetic annihilation and reconnection in the vicinity of magnetic nul...
Solar flares, magnetic substorms and sawtooth crashes in fusion devices are explosive events in whic...
The linear theory of magnetic reconnection demonstrates that the rate of energy release at an X-type...
Magnetic reconnection is a plasma process in which stored magnetic energy is converted into thermal ...
The planar magnetic reconnection problem for viscous, resistive plasmas is addressed. We show that s...
We investigate the dynamical relaxation of a disturbed X-type magnetic neutral point in a periodic g...
Here we detail the dynamic evolution of localised reconnection regions about three-dimensional (3D) ...
The problem of dynamic, three-dimensional magnetic reconnection is considered. Analytic “fan current...
The problem of incompressible, nonlinear magnetic reconnection in three-dimensional "open" geometrie...
The ability of three-dimensional magnetic “spine” and “fan” reconnection solutions to provide flarel...
The ability of three-dimensional magnetic “ “ spine ÏÏ and “ “ fan ÏÏ reconnection solutions to prov...
The power output of flux pile-up magnetic reconnection is known to be determined by the total hydrom...
We consider the linear and nonlinear evolution of disturbed magnetic X-type neutral points. The prob...
The phenomena of steady-state magnetic annihilation and reconnection in the vicinity of magnetic nul...
Solar flares, magnetic substorms and sawtooth crashes in fusion devices are explosive events in whic...
The linear theory of magnetic reconnection demonstrates that the rate of energy release at an X-type...
Magnetic reconnection is a plasma process in which stored magnetic energy is converted into thermal ...
The planar magnetic reconnection problem for viscous, resistive plasmas is addressed. We show that s...
We investigate the dynamical relaxation of a disturbed X-type magnetic neutral point in a periodic g...
Here we detail the dynamic evolution of localised reconnection regions about three-dimensional (3D) ...