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Imaging spectroscopy diagnosis of internal electron temperature and density distributions of plasma cloud surrounding hydrogen pellet in the Large Helical Device

机译:大型螺旋装置中氢颗粒周围等离子体云的内部电子温度和密度分布的成像光谱诊断

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摘要

To investigate the behavior of hydrogen pellet ablation, a novel method of high-speed imaging spectroscopy has been used in the Large Helical Device (LHD) for identifying the internal distribution of the electron density and temperature of the plasma cloud surrounding the pellet. This spectroscopic system consists of a five-branch fiberscope and a fast camera, with each objective lens having a different narrow-band optical filter for the hydrogen Balmer lines and the background continuum radiation. The electron density and temperature in the plasma cloud are obtained, with a spatial resolution of about 6 mm and a temporal resolution of 5 × 10?5?s, from the intensity ratio measured through these filters. To verify the imaging, the average electron density and temperature also have been measured from the total emission by using a photodiode, showing that both density and temperature increase with time during the pellet ablation. The electron density distribution ranging from 1022 to 1024?m?3 and the temperature distribution around 1 eV have been observed via imaging. The electron density and temperature of a 0.1 m plasma cloud are distributed along the magnetic field lines and a significant electron pressure forms in the plasma cloud for typical experimental conditions of the LHD.
机译:为了研究氢颗粒烧蚀的行为,在大型螺旋装置(LHD)中使用了一种高速成像光谱的新方法,用于识别电子密度的内部分布以及围绕颗粒的等离子体云的温度。该分光镜系统由五支纤维镜和一台快速照相机组成,每个物镜均具有用于氢气巴尔默谱线和背景连续谱辐射的不同的窄带光学滤波器。根据通过这些滤光片测得的强度比,可以获得等离子云中的电子密度和温度,其空间分辨率约为6 mm,时间分辨率为5×10?5?s。为了验证成像,还通过使用光电二极管从总发射中测量了平均电子密度和温度,显示出颗粒消融期间密度和温度均随时间增加。通过成像观察到电子密度分布在1022至1024?m?3之间,温度分布在1 eV附近。对于LHD的典型实验条件,0.1 m等离子体云的电子密度和温度沿磁场线分布​​,并且在等离子体云中形成了显着的电子压力。

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