Particle Orbits in a Heliotron Magnetic Field
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概要
- 論文の詳細を見る
The motion of individual charged particles in a Heliotron magnetic field, which is an axialsymrnetrically corrugated field with zero-field points, is investigated. The effective potential is introduced to describe the motion in the (r, z) plane, and the conditions for the trapping of the particle inside the neutral line (the line of force passing through the zero-field points) are obtained in terms of the particle energy and canonical angular momentum. The particle orbits are calculated numerically on an electronic computer. The adiabaticity of the magnetic moment of the particle is examined from the calculations, and three classes of orbits; (i) adiabatic, (ii) moderately adiabatic and (iii) non-adiabatic orbits are distinguished. The azimuthal drift and the longitudinal invariant of the particle are also examined.
- 社団法人日本物理学会の論文
- 1965-07-05
著者
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MURAKAMI Masanori
Department of Cardiovascular Surgery, Shakaihoken Tokuyama Central Hospital, Shunan
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Amano Tsuneo
Department Of Nuclear Science Faculty Of Science Kyoto University
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Murakami Masanori
Department Of Electrical Engineering Faculty Of Engineering Kyoto University
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Murakami Masanori
Department Of Applied Chemistry Tokyo Institute Of Technology
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OUTI Akizi
Institute of Plasma Physics, Nagoya University
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Outi Akizi
Institute Of Physical And Chemical Research
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