Application of high precision wavelength calibration method for plasmas rotation measurement based on Fabry-Pérot etalon on experimental advanced superconducting tokamak.

Shengyu Fu, Xianghui Yin, J. Fu, Yingying Li, Fudi Wang, Hongming Zhang, C. Bae, B. Lyu, Qianhong Huang, Yongcai Shen, Yichao Li, Liang He, Yifei Jin, X. Gong
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Abstract

Analyzing the radiation spectra of impurity ions is a widely applied diagnostic scheme for plasma ion temperature and rotation measurements on tokamaks. High precision wavelength calibration is a prerequisite for the accurate measurement of plasma parameters, especially for plasma rotation. Furthermore, the sparseness or absence of the standard spectral lines brings calibration challenges due to the narrow wavelength range. A precise wavelength calibration method is demonstrated in which the comb-like spectra generated by the Fabry-Pérot etalon can lock a series of fixed peaks as reference points in a wide wavelength range. The equal frequency intervals of the comb-like spectra are further corrected using several characteristic neon lines of known wavelengths. The experimental results indicate that the wavelength accuracy obtained by this calibration method is less than 0.005 nm, which corresponds to a rotation speed of 2.3 km/s in the toroidal direction for the beam emission spectroscopy spectrometer installed on the experimental advanced superconducting tokamak. Taking the O V(650.024 nm, n = 4 → 3) line as an example, the maximum difference in the oxygen ion rotation velocity is 3.8 km/s for the absolute rotation of ∼25 km/s, when compared with the calibration results of a standard lamp.
基于fabry - p标准子的等离子体旋转测量高精度波长校准方法在实验性先进超导托卡马克上的应用。
分析杂质离子的辐射光谱是一种广泛应用于托卡马克等离子体离子温度和旋转测量的诊断方案。高精度波长校准是准确测量等离子体参数,特别是等离子体旋转参数的前提。此外,由于波长范围窄,标准光谱线的稀疏或缺失给校准带来了挑战。本文提出了一种精确的波长校准方法,利用法布里-帕姆罗特标准子产生的梳状光谱可以锁定一系列固定的峰作为宽波长范围内的参考点。梳状光谱的等频率间隔用若干已知波长的特征氖谱线进一步校正。实验结果表明,该校准方法获得的波长精度小于0.005 nm,对应于安装在实验先进超导托卡马克上的束流发射光谱光谱仪在环面方向上的旋转速度为2.3 km/s。以O V(650.024 nm, n = 4→3)线为例,在绝对旋转~ 25 km/s时,与标准灯的校准结果相比,氧离子旋转速度的最大差异为3.8 km/s。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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