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利用多频微波在具有永久磁铁的大口径电子回旋共振离子源上产生电子回旋共振等离子体并进行有源束流轮廓控制。

Production of electron cyclotron resonance plasma by using multifrequencies microwaves and active beam profile control on a large bore electron cyclotron resonance ion source with permanent magnets.

作者信息

Kato Yushi, Watanabe Takeyoshi, Matsui Yuuki, Hirai Yoshiaki, Kutsumi Osamu, Sakamoto Naoki, Sato Fuminobu, Iida Toshiyuki

机构信息

Division of Electrical, Electronic and Information Engineering, Graduate School of Engineering, Osaka University, 2-1 Yamada-oka, Suita-shi, Osaka 565-0871, Japan.

出版信息

Rev Sci Instrum. 2010 Feb;81(2):02A313. doi: 10.1063/1.3277195.

Abstract

A new concept on magnetic field with all magnets on plasma production and confinement has been proposed to enhance efficiency of an electron cyclotron resonance (ECR) plasma for broad and dense ion beam source under the low pressure. The magnetic field configuration is constructed by a pair of magnets assembly, i.e., comb-shaped magnet which cylindrically surrounds the plasma chamber. The resonance zones corresponding to the fundamental ECR for 2.45 GHz and 11-13 GHz frequencies are constructed at different positions. The profiles of the plasma parameters in the ECR ion source are different from each frequency of microwave. Large bore extractor is set at the opposite side against the microwave feeds. It is found that differences of their profiles also appear at those of ion beam profiles. We conducted to launch simultaneously multiplex frequencies microwaves controlled individually, and tried to control the profiles of the plasma parameters and then those of extracted ion beam.

摘要

为了提高电子回旋共振(ECR)等离子体在低压下产生宽束和密集离子束源的效率,提出了一种关于磁场的新概念,即所有磁体都用于等离子体的产生和约束。磁场配置由一对磁体组件构成,即圆柱形围绕等离子体腔室的梳状磁体。对应于2.45GHz和11 - 13GHz频率的基波ECR的共振区在不同位置构建。ECR离子源中等离子体参数的分布因微波频率而异。大口径引出器设置在与微波馈源相对的一侧。发现它们的分布差异在离子束分布中也会出现。我们进行了单独控制的多路复用频率微波的同时发射,并试图控制等离子体参数的分布,进而控制引出离子束的分布。

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