Numerical simulations of highly nonlinear magnetic reconnection provide evidence of ultrathin current microsheets. These small-scale sheets are formed by strong exhaust jets from a primary large-scale current layer. The overall size of the secondary microsheet is determined by the thickness of the primary sheet. Preliminary scalings show that the thickness of the microsheet varies linearly with the plasma resistivity. This scaling suggests that microsheets may provide fast reconnection sites in magnetically complex plasmas such as the solar corona and planetary magnetospheres
We performed 2.5D compressible resistive MHD simulations of magnetic reconnection with gravity consi...
Collisionless space plasma turbulence can generate reconnecting thin current sheets as suggested by ...
Using simulated data-driven, 3D resistive MHD simulations of the solar atmosphere, we show that 3D m...
Numerical simulations of highly nonlinear magnetic reconnection provide evidence of ultrathin curren...
Turbulent plasmas generate a multitude of thin current structures that can be sites for magnetic rec...
Turbulent plasmas generate a multitude of thin current structures that can be sites for magnetic rec...
Magnetic reconnection is a fundamental physical process in various astrophysical, space, and laborat...
Magnetic reconnection is at the root of explosive phenomena such as solar flares, coronal mass eject...
Turbulent plasmas generate a multitude of thin current structures that can be sites for magnetic rec...
This is the final version. Available from OP Publishing via the DOI in this recordMagnetic reconnect...
A strong indication that fast reconnection regimes exist within resistive magnetohydrodynamics was g...
The magnetic reconnection that occurs during the nonlinear development of the coalescence instabilit...
We attempt to model magnetic reconnection during the two-ribbon flare in the gravitationally stratif...
We present a detailed analysis of the properties of magnetic reconnection at large-scale current she...
We report the observations of a plasma jet evolving through a macro- to micro-scale progression sequ...
We performed 2.5D compressible resistive MHD simulations of magnetic reconnection with gravity consi...
Collisionless space plasma turbulence can generate reconnecting thin current sheets as suggested by ...
Using simulated data-driven, 3D resistive MHD simulations of the solar atmosphere, we show that 3D m...
Numerical simulations of highly nonlinear magnetic reconnection provide evidence of ultrathin curren...
Turbulent plasmas generate a multitude of thin current structures that can be sites for magnetic rec...
Turbulent plasmas generate a multitude of thin current structures that can be sites for magnetic rec...
Magnetic reconnection is a fundamental physical process in various astrophysical, space, and laborat...
Magnetic reconnection is at the root of explosive phenomena such as solar flares, coronal mass eject...
Turbulent plasmas generate a multitude of thin current structures that can be sites for magnetic rec...
This is the final version. Available from OP Publishing via the DOI in this recordMagnetic reconnect...
A strong indication that fast reconnection regimes exist within resistive magnetohydrodynamics was g...
The magnetic reconnection that occurs during the nonlinear development of the coalescence instabilit...
We attempt to model magnetic reconnection during the two-ribbon flare in the gravitationally stratif...
We present a detailed analysis of the properties of magnetic reconnection at large-scale current she...
We report the observations of a plasma jet evolving through a macro- to micro-scale progression sequ...
We performed 2.5D compressible resistive MHD simulations of magnetic reconnection with gravity consi...
Collisionless space plasma turbulence can generate reconnecting thin current sheets as suggested by ...
Using simulated data-driven, 3D resistive MHD simulations of the solar atmosphere, we show that 3D m...