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首页> 外文期刊>Nuclear Materials and Energy >Spectroscopic studies on the enhanced radiation with high Z rare gas seeding for mitigating divertor heat loads in LHD plasmas
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Spectroscopic studies on the enhanced radiation with high Z rare gas seeding for mitigating divertor heat loads in LHD plasmas

机译:高Z稀有气体注入增强辐射以减轻LHD等离子体中偏滤器热负荷的光谱研究

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We have measured extreme ultraviolet (EUV) and soft X-ray emission spectra of krypton (Kr) ions in the Large Helical Device (LHD) plasmas with Kr gas seeding intended for mitigating divertor heat loads. Several isolated lines or quasi-continuum bands from ion stages in the range of Kr5+–Kr25+have been identified in a variety of wavelength ranges. The time trends of the line intensities indicate major contributions of ions with M-shell (n?=?3) outermost electrons to the enhanced total radiation in the region closer to the core plasma. A line intensity ratio analysis for Kr25+implies an unignorable contribution of the recombining component for the emissivity from this ion stage. A difference between the trends of neon (Ne) and Kr is also observed in a discharge with a combination of Kr and Ne seedings intended for more effective radiation enhancement.
机译:我们已经测量了大型螺旋装置(LHD)等离子体中k离子的极紫外(EUV)和soft(Kr)离子的软X射线发射光谱,并采用了Kr气体注入来减轻偏滤器的热负荷。在各种波长范围内,已经确定了来自离子阶段的几个分离的谱线或准连续谱带,其范围在Kr5 + –Kr25 +范围内。线强度的时间趋势表明,最靠近M-壳(n≥3)的电子对离核心等离子体较近的区域中总辐射的增加起主要作用。 Kr25 +的线强度比分析表明,重组组分对该离子级的发射率具有不可忽视的贡献。在放电过程中还观察到了氖气(Ne)和Kr趋势之间的差异,该放电结合了Kr和Ne种子,旨在更有效地增强辐射。

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