We present a class of one-dimensional, strictly neutral, Vlasov-Maxwell equilibrium distribution functions for force-free current sheets, with magnetic fields defined in terms of Jacobian elliptic functions, extending the results of Abraham-Shrauner [Phys. Plasmas 20, 102117 (2013)] to allow for non-uniform density and temperature profiles. To achieve this, we use an approach previously applied to the force-free Harris sheet by Kolotkov et al. [Phys. Plasmas 22, 112902 (2015)]. In one limit of the parameters, we recover the model of Kolotkov et al. [Phys. Plasmas 22, 112902 (2015)], while another limit gives a linear force-free field. We discuss conditions on the parameters such that the distribution functions are always positive and give e...
So far, only one distribution function giving rise to a collisionless nonlinear force-free current s...
In this thesis examples of translationally invariant one-dimensional (1D) Vlasov-Maxwell (VM) equili...
A self-consistent collisionless distribution function for the relativistic analogue of the force-fre...
The authors acknowledge the support of the Science and Technology Facilities Council via the consoli...
A family of self-consistent collisionless distribution functions for the force-free Harris sheet is ...
The kinetic model of a one-dimensional force-free current sheet (CS) developed recently by Harrison ...
We discuss a family of Vlasov-Maxwell equilibrium distribution functions for current sheet equilibri...
A detailed discussion is presented of the Vlasov-Maxwell equilibrium for the force-free Harris sheet...
So far, only one distribution function giving rise to a collisionless nonlinear force-free current s...
We acknowledge the support of the Science and Technology Facilities Council via the consolidated gra...
Current sheets are important for the structure and dynamics of many plasma systems. In space and ast...
In this Letter, the first nonlinear force-free Vlasov-Maxwell equilibrium is presented. One componen...
Current sheets in the collisionless solar wind usually have kinetic spatial scales. In-situ measurem...
The work in this thesis focuses primarily on equilibrium and stability properties of collisionless c...
We present a first discussion and analysis of the physical properties of a new exact collisionless e...
So far, only one distribution function giving rise to a collisionless nonlinear force-free current s...
In this thesis examples of translationally invariant one-dimensional (1D) Vlasov-Maxwell (VM) equili...
A self-consistent collisionless distribution function for the relativistic analogue of the force-fre...
The authors acknowledge the support of the Science and Technology Facilities Council via the consoli...
A family of self-consistent collisionless distribution functions for the force-free Harris sheet is ...
The kinetic model of a one-dimensional force-free current sheet (CS) developed recently by Harrison ...
We discuss a family of Vlasov-Maxwell equilibrium distribution functions for current sheet equilibri...
A detailed discussion is presented of the Vlasov-Maxwell equilibrium for the force-free Harris sheet...
So far, only one distribution function giving rise to a collisionless nonlinear force-free current s...
We acknowledge the support of the Science and Technology Facilities Council via the consolidated gra...
Current sheets are important for the structure and dynamics of many plasma systems. In space and ast...
In this Letter, the first nonlinear force-free Vlasov-Maxwell equilibrium is presented. One componen...
Current sheets in the collisionless solar wind usually have kinetic spatial scales. In-situ measurem...
The work in this thesis focuses primarily on equilibrium and stability properties of collisionless c...
We present a first discussion and analysis of the physical properties of a new exact collisionless e...
So far, only one distribution function giving rise to a collisionless nonlinear force-free current s...
In this thesis examples of translationally invariant one-dimensional (1D) Vlasov-Maxwell (VM) equili...
A self-consistent collisionless distribution function for the relativistic analogue of the force-fre...