High-Z Impurity Transport Code by Monte Carlo Method in a Realistic Tokamak Geometry – IMPGYRO –
Author:
Publisher
Wiley
Subject
Condensed Matter Physics
Reference11 articles.
1. Multi-dimensional impurity transport code by Monte Carlo method including gyro-orbit effects
2. A binary collision model for plasma simulation with a particle code
3. An Implicit Monte Carlo Method for Simulation of Impurity Transport in Divertor Plasma
4. Modeling of multi-dimensional impurity transport in a realistic tokamak geometry
5. Plasma Edge Physics with B2-Eirene
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1. IMPGYRO: The full-orbit impurity transport code for SOL/divertor and its successful application to tungsten impurities;Computer Physics Communications;2020-03
2. Kinetic effects of inclined magnetic field on physical sputtering by impurity ions;Journal of Nuclear Materials;2013-07
3. PIC simulation of kinetic effects of plasma and consequences for physical sputtering;Journal of Nuclear Materials;2011-08
4. Accumulation Process of High-Z Impurity in Toroidal Rotating Tokamak Plasma;Contributions to Plasma Physics;2010-05
5. Coupled IMPGYRO-EDDY simulation of tungsten impurity transport in tokamak geometry;Journal of Nuclear Materials;2009-06
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