We attempt to model magnetic reconnection during the two-ribbon flare in the gravitationally stratified solar atmosphere with the Lundquist number of $S=10^6$ using 2D simulations. We found that the tearing mode instability leads to the inhomogeneous turbulence inside the reconnecting current sheet (CS) and invokes the fast phase of reconnection. Fast reconnection brings an extra dissipation of magnetic field which enhances the reconnection rate in an apparent way. The energy spectrum in the CS shows the power-law pattern and the dynamics of plasmoids governs the associated spectral index. We noticed that the energy dissipation occurs at a scale $l_{ko}$ of 100-200~km, and the associated CS thickness ranges from 1500 to 2500~km, which follo...
Current sheets (CSs), long stretching structures of magnetic reconnection above solar flare loops, a...
Solar flares are one of the most energetic events in the solar system, created by the explosive conv...
This dissertation develops a one-dimensional, analytic model for current sheets that form during sol...
Magnetic reconnection is a fundamental physical process in various astrophysical, space, and laborat...
LaRosa & Moore (1993) recently proposed that the bulk dissipation of magnetic field that is required...
In this article, we measure the mean magnetic shear from the morphological evolution of flare ribbon...
The dissipation mechanism at the magnetic X-point of the reconnection process in solar flares is stu...
This is the final version. Available from OP Publishing via the DOI in this recordMagnetic reconnect...
Solar flares may be the best-known examples of the explosive conversion of magnetic energy into bulk...
In flare-relevant current sheets, tearing instability may trigger explosive reconnection and plasmoi...
A strong indication that fast reconnection regimes exist within resistive magnetohydrodynamics was g...
The outermost layer of the solar atmosphere is the solar corona where the temperature exceeds one mi...
A new path for the generation of a sub-ion-scale cascade in collisionless space and astrophysical pl...
A new path for the generation of a sub-ion-scale cascade in collisionless space and astrophysical pl...
A new path for the generation of a sub-ion-scale cascade in collisionless space and astrophysical pl...
Current sheets (CSs), long stretching structures of magnetic reconnection above solar flare loops, a...
Solar flares are one of the most energetic events in the solar system, created by the explosive conv...
This dissertation develops a one-dimensional, analytic model for current sheets that form during sol...
Magnetic reconnection is a fundamental physical process in various astrophysical, space, and laborat...
LaRosa & Moore (1993) recently proposed that the bulk dissipation of magnetic field that is required...
In this article, we measure the mean magnetic shear from the morphological evolution of flare ribbon...
The dissipation mechanism at the magnetic X-point of the reconnection process in solar flares is stu...
This is the final version. Available from OP Publishing via the DOI in this recordMagnetic reconnect...
Solar flares may be the best-known examples of the explosive conversion of magnetic energy into bulk...
In flare-relevant current sheets, tearing instability may trigger explosive reconnection and plasmoi...
A strong indication that fast reconnection regimes exist within resistive magnetohydrodynamics was g...
The outermost layer of the solar atmosphere is the solar corona where the temperature exceeds one mi...
A new path for the generation of a sub-ion-scale cascade in collisionless space and astrophysical pl...
A new path for the generation of a sub-ion-scale cascade in collisionless space and astrophysical pl...
A new path for the generation of a sub-ion-scale cascade in collisionless space and astrophysical pl...
Current sheets (CSs), long stretching structures of magnetic reconnection above solar flare loops, a...
Solar flares are one of the most energetic events in the solar system, created by the explosive conv...
This dissertation develops a one-dimensional, analytic model for current sheets that form during sol...