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Magnetic field configurational study on a helicon-based plasma source for future neutral beam systems

机译:未来中性光束系统的直升离子等离子体源的磁场配置研究

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A helicon-based plasma source is under development and exploration at CEA-IRFM to produce an efficient and dense magnetized plasma column. The final objective of this development is the extraction and acceleration of a blade-like negative ion beam in view of future neutral beam injector systems for fusion reactors. The extraction of a negative ion beam from a magnetized plasma column requires a specific topology of the magnetic confinement, which significantly impacts the plasma parameters and wave propagation along the column. The magnetic confinement under investigation is based on water-cooled internal coils implemented under vacuum along the source (column) axis; these coils are supplied with a high DC current (~1000 A), providing the axial magnetic field (B// ~ 10 mT). Different diagnostics developed in academic laboratories, such as 3D B-dot probes, optical emission spectroscopy and Langmuir probes, have been used for plasma characterization. The paper reports the experimental results obtained under different operating conditions of this particular magnetic confinement.
机译:基于Helicon的等离子体源是在CEA-IRFM的开发和探索中,以产生高效和致密的磁化等离子体柱。该开发的最终目标是考虑到未来融合反应器的未来中性光束注射器系统的叶片状负离子束的提取和加速。来自磁化等离子体柱的负离子束的提取需要磁监管的特定拓扑,这显着影响了沿着柱的等离子体参数和波传播。正在研究的磁监禁基于沿源(柱)轴的真空实现的水冷内部线圈;这些线圈提供高直流电流(〜1000A),提供轴向磁场(B //〜10mt)。在学术实验室中开发的不同诊断,例如3D B-DOT探针,光学发射光谱和Langmuir探针,已用于等离子体表征。本文报告了在该特定磁监禁的不同操作条件下获得的实验结果。

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