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Spatial Profile of Neutral Temperature Measurement in Aditya-U Tokamak Plasmas

机译:Aditya-u Tokamak等离子体中性温度测量的空间轮廓

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The spatial profile of neutral hydrogen temperatures in Aditya-U tokamak plasma has been estimated from the spatial profile of the H α spectral emissions measured using a high-resolution multi-track spectrometer, having a spectral resolution of 0.023 nm at a 50 μm entrance slit width. The neutral temperature estimation from the Doppler broadened spectral line was carried out after considering the Zeeman effect due to the magnetic field present in the tokamak. To accurately obtain the temperature of the neutral hydrogen, two temperature components (warm and hot) were required to be considered. A code was developed to obtain the neutral temperature and is used to analyze two typical plasma discharges. The temperature of warm components varies between 3 and 5 eV, while hot atoms have temperatures in the range of 15–30 eV. It was observed that the chord-integrated neutral temperature increases slightly towards the plasma core region compared to the plasma edge of Aditya-U tokamak.
机译:已经从使用高分辨率多轨道光谱仪测量的Hα光谱排放的空间轮廓估计了Aditya-U Tokamak等离子体中的中性氢气温度的空间轮廓,其在50μm入口处的光谱分辨率为0.023nm的光谱分辨率宽度。在考虑到Tokamak中存在的磁场引起的Zeeman效应之后,进行了来自多普勒扩大光谱线的中性温度估计。为了准确地获得中性氢的温度,需要考虑两个温度成分(温热和热)。开发了代码以获得中性温度,并用于分析两个典型的等离子体放电。温度成分温度在3到5eV之间变化,而热原子在15-30eV的范围内具有温度。观察到与Aditya-U Tokamak的等离子体边缘相比,弦整合中性温度朝向等离子体芯区域略微增加。

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