paper

Global Energetics of Solar Flares: X. Petschek Reconnection Rate and Alfven Mach Number of Magnetic Reconnection Outflows

arXiv:2007.04404 · doi:10.3847/1538-4357/ab8aec

Abstract

We investigate physical scaling laws for magnetic energy dissipation in solar flares, in the framework of the Sweet-Parker model and the Petschek model. We find that the total dissipated magnetic energy in a flare depends on the mean magnetic field component associated with the free energy , the length scale of the magnetic area, the hydrostatic density scale height of the solar corona, the Alfvén Mach number (the ratio of the inflow speed to the Alfvénic outflow speed ), and the flare duration , i.e., , where the Alfvén speed depends on the nonpotential field strength and the mean electron density in the reconnection outflow. Using MDI/SDO and AIA/SDO observations and 3-D magnetic field solutions obtained with the vertical-current approximation nonlinear force-free field code (VCA-NLFFF) we measure all physical parameters necessary to test scaling laws, which represents a new method to measure Alfvén Mach numbers , the reconnection rate, and the total free energy dissipated in solar flares.

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