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R&D STATUS OF NEUTRAL BEAM ASSISTED DIAGNOSTICS ON THE HANBIT MIRROR DEVICE

机译:手持镜装置中性束辅助诊断的研发现状

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Two types of neutral beam sources have been developed in order to measure plasma parameters on the Hanbit mirror device. The first source is a diagnostic neutral beam (DNB) which consists of a hydrogen neutral beam with a beam energy of 30 keV and a total beam current of ca. 1 A. The ion temperature profile can be determined by measuring directly the broadening of the H_α line emitted from hydrogen neutrals produced through the charge exchange recombination reaction with the DNB in the plasma. A fibre optic array detector, which works as an ideal notching filter, was developed to filter out the intense H_α line emitted from the cold hydrogen atoms in the plasma edge. The second source is a hyperthermal neutral beam (HNB) which consists of neutral particles with an energy of 1-100 eV. The HNB can be used to measure electron temperature and density profiles in the region between the core and the outer edge. This region cannot be covered either by Thomson scattering or by electrostatic probes. The feasibility of obtaining profiles of electron density and temperature by means of a helium HNB with a collisonal radiative equilibrium code has been performed.
机译:为了测量汉比特镜装置上的等离子体参数,已经开发出两种类型的中性束源。第一个源是诊断中性束(DNB),它由离子束能量为30 keV且总束流约为ca的氢中性束组成。可以通过直接测量从等离子体中DNB的电荷交换重组反应产生的氢中性分子发出的H_α线的宽度来确定离子温度曲线。开发了用作理想陷波滤波器的光纤阵列检测器,以滤除从等离子体边缘的冷氢原子发出的强烈的H_α线。第二个来源是超高温中性束(HNB),由能量为1-100 eV的中性粒子组成。 HNB可用于测量纤芯和外边缘之间区域的电子温度和密度分布。汤姆森散射或静电探针都无法覆盖该区域。已经执行了通过具有碰撞辐射平衡代码的氦气HNB获得电子密度和温度分布图的可行性。

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