The laminar wave train structure of collisionless magnetic slow shocks is investigated using two fluid hydromagnetics with ion cyclotron radius dispersion. For shock strengths less than the maximally strong switch-off shock, in the shock leading edge dispersive steepening forms a magnetic field gradient, while in the downstream flow dispersive propagation forms a trailing wave train; dispersion scale lengths are the ion inertial length if beta is smaller than 1 and the ion cyclotron radius if beta is greater than 1. In the switch-off slow shock leading edge, dispersion only produced rotations of the magnetic field direction; the gradient of the magnetic field magnitude, and hence the shock steepening length, is determined solely by resistiv...
The possibility that slow-mode shock compression may produce at least some of the increased brightne...
[1] Directed flow of incident ions provides the free energy which is redistributed in a shock among ...
Plasmoid structures in fast reconnection in low-beta plasmas are investigated by two-dimensional mag...
Laminar collisionless fast and slow shock wave theory by finite-Larmor-radius hydromagnetic fluid eq...
In a finite-beta plasma ion cyclotron, radius dispersion which forms a trailing wave train for a per...
International audienceWhistler wave trains are observed in the foot region of high Mach number quasi...
Dissertation (Ph.D.) University of Alaska Fairbanks, 1991A variety of nonlinear hydromagnetic waves ...
A 2-D Riemann problem is designed to study the development and dynamics of the slow shocks that are ...
The mathematical question of the existence of structure for "fast", "slow", "intermediate", "switch-...
Structure of plane magnetohydrodynamic shock wave in rarefied fully ionized plasm
The role of slow-mode magnetohydrodynamic (MHD) shocks in magnetic reconnection is of great importan...
Collisionless shocks in plasmas, dissipation and dispersion in determining shock structur
Ionizing shock waves in magnetofluiddynamics occur when the coefficient of electrical conductivity i...
This is the final version. Available from EDP Sciences via the DOI in this record.Context. Slow-mode...
International audienceA study of the structure of 145 low-Mach number (M ≤ 3), low-beta (≤ 1), quasi...
The possibility that slow-mode shock compression may produce at least some of the increased brightne...
[1] Directed flow of incident ions provides the free energy which is redistributed in a shock among ...
Plasmoid structures in fast reconnection in low-beta plasmas are investigated by two-dimensional mag...
Laminar collisionless fast and slow shock wave theory by finite-Larmor-radius hydromagnetic fluid eq...
In a finite-beta plasma ion cyclotron, radius dispersion which forms a trailing wave train for a per...
International audienceWhistler wave trains are observed in the foot region of high Mach number quasi...
Dissertation (Ph.D.) University of Alaska Fairbanks, 1991A variety of nonlinear hydromagnetic waves ...
A 2-D Riemann problem is designed to study the development and dynamics of the slow shocks that are ...
The mathematical question of the existence of structure for "fast", "slow", "intermediate", "switch-...
Structure of plane magnetohydrodynamic shock wave in rarefied fully ionized plasm
The role of slow-mode magnetohydrodynamic (MHD) shocks in magnetic reconnection is of great importan...
Collisionless shocks in plasmas, dissipation and dispersion in determining shock structur
Ionizing shock waves in magnetofluiddynamics occur when the coefficient of electrical conductivity i...
This is the final version. Available from EDP Sciences via the DOI in this record.Context. Slow-mode...
International audienceA study of the structure of 145 low-Mach number (M ≤ 3), low-beta (≤ 1), quasi...
The possibility that slow-mode shock compression may produce at least some of the increased brightne...
[1] Directed flow of incident ions provides the free energy which is redistributed in a shock among ...
Plasmoid structures in fast reconnection in low-beta plasmas are investigated by two-dimensional mag...