Wave–particle interaction is a key process in particle diffusion in collisionless plasmas. We look into the interaction of single plasma waves with individual particles and discuss under which circumstances this is a chaotic process, leading to diffusion. We derive the equations of motion for a particle in the fields of a magnetostatic, circularly polarized, monochromatic wave and show that no chaotic particle motion can arise under such circumstances. A novel and exact analytic solution for the equations is presented. Additional plasma waves lead to a breakdown of the analytic solution and chaotic particle trajectories become possible. We demonstrate thi...
It is shown that the guiding center motion around a single chain of magnetic islands in a sheared sl...
Asymmetry-induced transport of a non-neutral plasma within a coaxial Malmberg-Penning trap is analyz...
A general formalism is developed to describe the interaction of charged particles with electromagnet...
Wave–particle interaction is a key process in particle diffusion in collisionless plasmas. We look i...
The onset of chaotic ion dynamics in electrostatic waves is investigated in a linear magnetized plas...
We study the dynamics of charged particles in the presence of two electrostatic waves propagating ob...
The basic physical processes in laser-matter interaction, up to $10^{17}~{\rm W/cm}^2$ (for a neodym...
It is shown that with two or more electrostatic waves propagating across a uniform and steady-state ...
Nonlinear theory is presented for solitary waves propagating parallel to the magnetic field in a col...
The dispersion relation for circularly polarized electromagnetic waves in a warm two‐component plasm...
A particularly simple problem exhibiting stochasticity is the motion of a charged particle in a unif...
Transport and diffusion of plasma particles perpendicular and parallel to the magnetic field is disc...
Plasma waves at frequencies well below the gyrofrequency of resonant particles cause particle diffus...
The propagation of plasma waves in unmagnetized plasmas has been the subject of several numerical an...
Particle motion in a cylindrical multiple-cusp magnetic field configuration is shown to be highly (t...
It is shown that the guiding center motion around a single chain of magnetic islands in a sheared sl...
Asymmetry-induced transport of a non-neutral plasma within a coaxial Malmberg-Penning trap is analyz...
A general formalism is developed to describe the interaction of charged particles with electromagnet...
Wave–particle interaction is a key process in particle diffusion in collisionless plasmas. We look i...
The onset of chaotic ion dynamics in electrostatic waves is investigated in a linear magnetized plas...
We study the dynamics of charged particles in the presence of two electrostatic waves propagating ob...
The basic physical processes in laser-matter interaction, up to $10^{17}~{\rm W/cm}^2$ (for a neodym...
It is shown that with two or more electrostatic waves propagating across a uniform and steady-state ...
Nonlinear theory is presented for solitary waves propagating parallel to the magnetic field in a col...
The dispersion relation for circularly polarized electromagnetic waves in a warm two‐component plasm...
A particularly simple problem exhibiting stochasticity is the motion of a charged particle in a unif...
Transport and diffusion of plasma particles perpendicular and parallel to the magnetic field is disc...
Plasma waves at frequencies well below the gyrofrequency of resonant particles cause particle diffus...
The propagation of plasma waves in unmagnetized plasmas has been the subject of several numerical an...
Particle motion in a cylindrical multiple-cusp magnetic field configuration is shown to be highly (t...
It is shown that the guiding center motion around a single chain of magnetic islands in a sheared sl...
Asymmetry-induced transport of a non-neutral plasma within a coaxial Malmberg-Penning trap is analyz...
A general formalism is developed to describe the interaction of charged particles with electromagnet...