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Discharge Characteristics of Large-Area High-Power RF Ion Source for Positive and Negative Neutral Beam Injectors

机译:正负中性束注入器大面积高功率射频离子源的放电特性

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A large-area high-power radio-frequency (RF) driven ion source was developed for positive and negative neutral beam injectors at the Korea Atomic Energy Research Institute (KAERI). The RF ion source consists of a driver region, including a helical antenna and a discharge chamber, and an expansion region. RF power can be transferred at up to 10 kW with a fixed frequency of 2 MHz through an optimized RF matching system. An actively water-cooled Faraday shield is located inside the driver region of the ion source for the stable and steady-state operations of high-power RF discharge. Plasma ignition of the ion source is initiated by the injection of argon-gas without a starter-filament heating, and the argon-gas is then slowly exchanged by the injection of hydrogen-gas to produce pure hydrogen plasmas. The uniformities of the plasma parameter, such as a plasma density and an electron temperature, are measured at the lowest area of the driver region using two RF-compensated electrostatic probes along the direction of the short-and long-dimensions of the driver region. The plasma parameters will be compared with those obtained at the lowest area of the expansion bucket to analyze the plasma expansion properties from the driver region to the expansion region.
机译:韩国原子能研究所(KAERI)开发了一种用于正负中性束注入器的大面积高功率射频(RF)驱动离子源。 RF离子源由包括螺旋形天线和放电室的驱动器区域和扩展区域组成。通过优化的RF匹配系统,可以以2 MHz的固定频率传输高达10 kW的RF功率。主动水冷法拉第屏蔽罩位于离子源的驱动器区域内,用于大功率RF放电的稳定和稳态操作。离子源的等离子体点火是通过在没有起动丝加热的情况下注入氩气而引发的,然后通过注入氢气缓慢地交换氩气以产生纯净的氢等离子体。使用两个射频补偿的静电探针,沿着驱动器区域的短尺寸和长尺寸方向,在驱动器区域的最低区域测量等离子体参数的均匀性,例如等离子体密度和电子温度。将血浆参数与在膨胀桶最低区域获得的血浆参数进行比较,以分析从驱动区域到膨胀区域的血浆膨胀特性。

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