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Simulation of the multi-channel motional Stark effect diagnostic on EAST Tokamak

机译:EAST Tokamak多通道运动Stark效应诊断的仿真

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摘要

A multi-channel motional Stark effect (MSE) diagnostic is under development for providing accurate information of the internal magnetic field on EAST tokamak. To assist the ongoing design and implementation of the diagnostic, an optimization study is performed using ALCBEAM and NBASS codes. The distribution of the attenuated neutral beam atom density is obtained by ALCBEAM for plasma parameters of T-e = 2.2keV, n(eo) = 1.6 x 10(13) cm(-3). The MSE spectrum, which is emitted from the beam-plasma interaction and collected by a double-column fiber array with a total number of 19 fibers, is simulated by NBASS on the condition that B-T = 2.256 T. The intensity of D-alpha beam emission for 29 channels is obtained, and the radial spatial resolution ranges from 0.9 cm to 2.3 cm (from edge to core). The influences of the filter's bandwidth on polarization and transmission are also considered and it is found that 50 % of the polarization and transmission can be achieved when the filter's bandwidth is around 0.48 nm. For EAST's MSE system, a 0.48 nm filter is used, which is predicted to have sufficiently high polarization and transmission efficiencies to obtain high-quality MSE signals. When the high voltage of the neutral beam changes, the center wavelength of the spectra shifts. The corresponding central wavelengths for different high voltages of 50 kV, 55 kV and 60 kV are calculated as a function of the major radius. This can serve as a reference for the deployment of the MSE diagnostic.
机译:正在开发一种多通道运动斯塔克效应(MSE)诊断,以提供EAST托卡马克上内部磁场的准确信息。为了协助正在进行的诊断设计和实施,使用ALCBEAM和NBASS代码进行了优化研究。对于等离子参数T-e = 2.2keV,n(eo)= 1.6 x 10(13)cm(-3),通过ALCBEAM获得了衰减的中性束原子密度的分布。由束流-等离子体相互作用发射并由总数为19根纤维的双列纤维阵列收集的MSE光谱由NBASS在BT = 2.256 T的条件下进行模拟。D-alpha束的强度获得29个通道的发射,径向空间分辨率范围从0.9 cm至2.3 cm(从边缘到核心)。还考虑了滤波器带宽对偏振和透射的影响,发现当滤波器的带宽约为0.48 nm时,可以实现50%的偏振和透射。对于EAST的MSE系统,使用0.48 nm的滤光片,据预测该滤光片具有足够高的极化和传输效率,可获取高质量的MSE信号。当中性束的高压发生变化时,光谱的中心波长会发生变化。计算50 kV,55 kV和60 kV不同高压的相应中心波长,作为长半径的函数。这可以作为MSE诊断部署的参考。

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