Title :
Simulation of the Formation of an Ion Beam by Extraction From a Magnetically Confined Plasma
Author :
Sierra, José Amilcar Rizzo ; Velasco, Ángel José Chacón
Author_Institution :
Univ. Ind. de Santander (UIS), Bucaramanga, Colombia
Abstract :
A computational simulation of the formation of an ion beam extracted from a magnetically confined ECR plasma is made. The first simulation stage consists of calculating of the electrostatic field produced by an extraction system. The extraction system is composed of three cylindrically hollow symmetrical electrodes and its respective shielding box. For the purpose of calculating the extraction and focalization electrostatic field, a finite-difference algorithm that solves Laplace equation within the ion propagation volume and allows studying the dependency of the electrostatic field on the geometrical configuration of the extraction system is developed. The second stage consists in calculating the electric and magnetic fields due to extracted ions themselves by solving Poisson equation using the fast Fourier transform technique based on a high-order difference approximation with identity expansion scheme. Finally, an algorithm based on Boris integration scheme to calculate ion trajectories with the objective of simulating the movement on an ion beam due to the field generated by electrodes and beam itself is developed. Based upon the results obtained, the search for an optimized ion extraction system from a 14-GHz ECR ion source is begun. Preliminary configurations are obtained and shown.
Keywords :
Poisson equation; differential equations; electrodes; fast Fourier transforms; finite difference methods; ion beams; ion sources; plasma confinement; plasma radiofrequency heating; plasma simulation; plasma sources; Boris integration scheme; ECR ion source; Laplace equation; Poisson equation; computational simulation; electrodes; expansion scheme; fast Fourier transform technique; finite-difference algorithm; focalization electrostatic field; frequency 14 GHz; geometrical configuration; high-order difference approximation; ion beam; ion propagation volume; magnetic fields; magnetically confined ECR plasma; magnetically confined plasma; optimized ion extraction system; shielding box; Computational modeling; Electric potential; Electrodes; Ion beams; Mathematical model; Plasmas; Trajectory; Boris integration algorithm; Laplace equation; Poisson equation; extraction system; fast Fourier transform (FFT); high-order difference approximation with identity expansion scheme; ion trajectories; particle in cell (PIC); particle in mesh; plasma;
Journal_Title :
Plasma Science, IEEE Transactions on
DOI :
10.1109/TPS.2011.2172962