Using the Bogolyubov method, the solution of equations of electron motion in a combined mirror-Type magnetic trap is obtained in cases when the electron approaches the cyclotron resonance region and when it passes through it. It is assumed that the synchronism between particle and the resonator standing wave is maintained by means of slow time variation of the guiding magnetic field. The problem is solved within the framework of the simplified model using the weakly relativistic approximation. © Published under licence by IOP Publishing Ltd
The electron cyclotron autoresonance is of both theoretical and practical interest for acceleration ...
The spatial configuration of a plasma vortex with the middle relativistic electron component produce...
We present an Hamiltonian treatment of gyrotrons and CARMs for the cases of resonant electron evolut...
The work presents experimental results demonstrating the feasibility of autoresonance acceleration o...
The electron motion at cyclotron resonance in the presence of a homogeneous time dependent magnetic ...
The work presents experimental results showing the feasibility of autoresonance acceleration in the ...
An autoresonance electron acceleration phenomenon in the combined steady-state inhomogeneous magneti...
In this paper, the cyclotron autoresonance acceleration of electrons in a stationary inhomogeneous m...
The Bogolyubov-Mitropol'skii method of averaging is used to obtain averaged equations of relativisti...
We performed a 3D numerical simulation of plasmoid generation with a relativistic electron component...
The possibility of autoresonance in a slow electromagnetic wave propagating along the straight lines...
Abstract: A numerical simulation of the formation of plasma bunches in a long mirror machine under t...
The physical mechanism and general properties of the motion of relativistic charged particles in the...
Abstract Cyclotron resonance is now applied as one of the important means for heating plasma in a fu...
The phenomenon of trapping of weakly relativistic charged particles (with kinetic energies on the or...
The electron cyclotron autoresonance is of both theoretical and practical interest for acceleration ...
The spatial configuration of a plasma vortex with the middle relativistic electron component produce...
We present an Hamiltonian treatment of gyrotrons and CARMs for the cases of resonant electron evolut...
The work presents experimental results demonstrating the feasibility of autoresonance acceleration o...
The electron motion at cyclotron resonance in the presence of a homogeneous time dependent magnetic ...
The work presents experimental results showing the feasibility of autoresonance acceleration in the ...
An autoresonance electron acceleration phenomenon in the combined steady-state inhomogeneous magneti...
In this paper, the cyclotron autoresonance acceleration of electrons in a stationary inhomogeneous m...
The Bogolyubov-Mitropol'skii method of averaging is used to obtain averaged equations of relativisti...
We performed a 3D numerical simulation of plasmoid generation with a relativistic electron component...
The possibility of autoresonance in a slow electromagnetic wave propagating along the straight lines...
Abstract: A numerical simulation of the formation of plasma bunches in a long mirror machine under t...
The physical mechanism and general properties of the motion of relativistic charged particles in the...
Abstract Cyclotron resonance is now applied as one of the important means for heating plasma in a fu...
The phenomenon of trapping of weakly relativistic charged particles (with kinetic energies on the or...
The electron cyclotron autoresonance is of both theoretical and practical interest for acceleration ...
The spatial configuration of a plasma vortex with the middle relativistic electron component produce...
We present an Hamiltonian treatment of gyrotrons and CARMs for the cases of resonant electron evolut...