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Impact of Toroidal Effect on Lower Hybrid Current Drive in Tokamak

Impact of Toroidal Effect on Lower Hybrid Current Drive in Tokamak
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摘要 The main topics concerning lower hybrid wave heating (LHH) and lower hybrid current drive (LHCD) in tokamak systems are presented. The inherent properties of tokamak systems give the ‘gap' filling on Brambilla's spectrum, which are conducive to LHCD, but, on the other hand, induce a consumption of wave energy by the trapped electrons, which reduce the current drive efficiency. The methods for the enhancement of the current drive efficiency may be derived from detailed analyses by drawing upon the ray tracing technology on toroidal geometry and the Fokker-Planck theory on velocity space. The main topics concerning lower hybrid wave heating (LHH) and lower hybrid current drive (LHCD) in tokamak systems are presented. The inherent properties of tokamak systems give the ‘gap' filling on Brambilla's spectrum, which are conducive to LHCD, but, on the other hand, induce a consumption of wave energy by the trapped electrons, which reduce the current drive efficiency. The methods for the enhancement of the current drive efficiency may be derived from detailed analyses by drawing upon the ray tracing technology on toroidal geometry and the Fokker-Planck theory on velocity space.
出处 《Plasma Science and Technology》 SCIE EI CAS CSCD 2005年第4期2901-2904,共4页 等离子体科学和技术(英文版)
基金 The project supported by National Natural Science Foundation of China (Nos. 10075016, 10275018 and 10135020)
关键词 lower hybrid current drive toroidal effect TOKAMAK lower hybrid current drive, toroidal effect, tokamak
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