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Monte Carlo simulation of ICRF discharge initiation in ITER
Author(s) -
M. Tripský,
T. Wauters,
A. Lyssoivan,
A. Křivská,
F. Louche,
M. Van Schoor,
J.-M. Noterdaeme
Publication year - 2015
Publication title -
aip conference proceedings
Language(s) - English
Resource type - Conference proceedings
eISSN - 1551-7616
pISSN - 0094-243X
DOI - 10.1063/1.4936507
Subject(s) - physics , monte carlo method , atomic physics , electron , plasma , computational physics , antenna (radio) , electric field , nuclear physics , electrical engineering , statistics , mathematics , quantum mechanics , engineering
Discharges produced and sustained by ion cyclotron range of frequency (ICRF) waves in absence of plasma current will be used on ITER for (ion cyclotron-) wall conditioning (ICWC). The here presented simulations aim at ensuring that the ITER ICRH&CD system can be safely employed for ICWC and at finding optimal parameters to initiate the plasma.The 1D Monte Carlo code RFdinity1D3V was developed to simulate ICRF discharge initiation. The code traces the electron motion along one toroidal magnetic field line, accelerated by the RF field in front of the ICRF antenna. Electron collisions in the calculations are handled by a Monte Carlo procedure taking into account their energies and the related electron collision cross sections for collisions with H2, H2+ and H+. The code also includes Coulomb collisions between electrons and ions (e − e, e − H2+, e − H+).We study the electron multiplication rate as a function of the RF discharge parameters (i) antenna input power (0.1-5MW), and (ii) the neutral pressure (H2) ...

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