Particle Orbits in a Heliotron Magnetic Field
スポンサーリンク
概要
- 論文の詳細を見る
Numerical Orbit integrations of charged particles in an axialsymmetric Heliotron magnetic field were carried out on an electronic computer. From the results of calculations, several characteristics of particle orbits, the adiabaticity of magnetic moment and azimuthal drifts of particles are examined.
- 核融合科学研究所の論文
著者
-
Amano Tsuneo
Research Information Center, Institute of Plasma Physics, Nagoya University
-
Amano Tsuneo
Research Information Center Institute Of Plasma Physics Nagoya University:plasma Physics Laboratory
-
Amano Tsuneo
Department Of Nuclear Science Faculty Of Science Kyoto University
-
Murakami Masanori
Department Of Electrical Engineering Faculty Of Engineering Kyoto University
-
Murakami Masanori
Research Information Center, Institute of Plasma Physics, Nagoya University
-
Outi Akizi
Research Information Center, Institute of Plasma Physics, Nagoya University
-
Outi Akizi
Research Information Center Institute Of Plasma Physics Nagoya University
-
Amano Tsuneo
Research Information Center Institute Of Plasma Physics Nagoya University
関連論文
- ON TOKAMAK EQUILIBRIUM
- Oxygen Transport and Line Emissions in a Tokamak Plasma
- Magnetohydrodynamic and Tearing Instabilities of a Current Carrying Plasma in a Tokamak Type Device
- Simulation of Adiabatic Compression Plasma
- Particle Orbits in a Heliotron Magnetic Field
- Particle Orbits in a Heliotron Magnetic Field
- Effects of a High-Frequency Electric Field on Micro-Instabilities Driven by Density Gradient
- Effects of a High-Frequency Electric Field on Micro-Instabilities Driven by Density Gradient
- A Negative V" System and Its Equilibrium
- On the Method of Numerical Computation of Dispersive Nonlinear Equation
- A Model of Dispersive Non-Linear Equation
- Non-Linear Motion of Two Ion Streams in a Background of High Temperature Electrons
- Parametric Excitation of Upper and Lower Hybrid Modes
- Confinement of Plasma Particles in a Corrugated Magnetic Field
- Gravitational Instability in a Cylindrical Plasma in a Magnetic Field
- A Negative V" System and Its Equilibrium