Scaling of asymmetric magnetic reconnection: General theory and collisional simulations
نویسنده
چکیده
A Sweet-Parker-type scaling analysis for asymmetric antiparallel reconnection in which the reconnecting magnetic field strengths and plasma densities are different on opposite sides of the dissipation region is performed. Scaling laws for the reconnection rate, outflow speed, the density of the outflow, and the structure of the dissipation region are derived from first principles. These results are independent of the dissipation mechanism. It is shown that a generic feature of asymmetric reconnection is that the X-line and stagnation point are not colocated, leading to a bulk flow of plasma across the X-line. The scaling laws are verified using two-dimensional resistive magnetohydrodynamics numerical simulations for the special case of asymmetric magnetic fields with symmetric density. Observational signatures and applications to reconnection in the magnetosphere are discussed. © 2007 American Institute of Physics. DOI: 10.1063/1.2795630
منابع مشابه
Scaling of asymmetric magnetic reconnection: Kinetic particle‐in‐cell simulations
[1] Recently, Cassak and Shay (2007) applied a generalized Sweet‐Parker analysis to derive scaling laws for gross properties of asymmetric magnetic reconnection, including the reconnection rate, outflow speed, and outflow density. This study presents the first comprehensive test of this scaling theory using fully electromagnetic particle‐in‐cell simulations of antiparallel asymmetric magnetic r...
متن کاملScaling of asymmetric Hall magnetic reconnection
[1] The scaling of the reconnection rate and ion and electron outflow speeds with upstream magnetic field strengths and plasma mass densities during asymmetric collisionless (Hall) reconnection without a guide field is studied using two-dimensional two-fluid simulations. The results agree with a recent theory by Cassak and Shay (2007). It is found that the normalized reconnection rate is on the...
متن کاملStructure of the dissipation region in fluid simulations of asymmetric magnetic reconnection
The structure of the dissipation region during asymmetric magnetic reconnection is studied assuming antiparallel magnetic fields in two dimensions. A physics-based prediction for the scaling of the thickness of the dissipation region in collisionless Hall reconnection is presented and confirmed with two-fluid simulations. However, the substructure of the dissipation region in these and addition...
متن کاملScaling of Sweet–Parker reconnection with secondary islands
Sweet–Parker collisional magnetic reconnection at high Lundquist number is modified by secondary islands. Daughton et al. Phys. Rev. Lett. 103, 065004 2009 suggested the Sweet– Parker model governs the fragmented current sheet segments. If true, the reconnection rate would increase by the square root of the number of secondary islands. High Lundquist number resistive magnetohydrodynamic simulat...
متن کاملTheory and simulations of the scaling of magnetic reconnection with symmetric shear flow
The scaling of magnetic reconnection in the presence of an oppositely directed sub-Alfvénic shear flow parallel to the reconnecting magnetic field is studied using analytical scaling arguments and two-dimensional two-fluid numerical simulations of collisionless (Hall) reconnection. Previous studies noted that the reconnection rate falls and the current sheet tilts with increasing flow speed, bu...
متن کامل