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Observation of coherent mode induced by a molybdenum dust on EAST

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摘要 The influence of a molybdenum dust buildup on plasma edge turbulence has been studied in the EAST tokamak.The motion of the dust from the upper divertor region is detected by a fast visible CCD camera,the XUV spectrometer arrays,and the EUV spectrometer.The MoXV emission intensity sharply increases compared with the spectral lines of various ionization states of other elements,which implies that the dust particles are the molybdenum impurities.The radial distribution of Mo^(14+)ion simulated by a simplified 1 D transport model indicates that the molybdenum dust mainly deposits in the pedestal bottom region.Moreover,it is observed that the coherent mode(CM)appears atρ=0.94 after the molybdenum impurities enter the main plasma region.The influx of molybdenum impurities results in increasing pedestal electron density and decreasing pedestal electron temperature in contrast to that before the event of impurities dropping.It is also found that the electron density gradient in the pedestal increases when the ablation of the molybdenum impurities is observed in the pedestal region.The qualitative experimental results indicate that the onset of CM is likely related to the increase of the density gradient and edge collisionality in the pedestal.In comparison to the density gradient,the enhancement of CM amplitude largely depends on the increase of the edge collisionality.
作者 龙飞飞 张涛 明廷凤 张凌 唐腾飞 杨秀达 杨建华 刘海庆 毛松涛 赵海林 段艳敏 陈颖杰 吴木泉 叶凯萱 朱翔 邓国忠 刘少承 王嵎民 刘晓菊 曾龙 王亮 臧庆 万元熙 高翔 EAST Team Feifei LONG;Tao ZHANG;Tingfeng MING;Ling ZHANG;Tengfei TANG;Xiuda YANG;Jianhua YANG;Haiqing LIU;Songtao MAO;Hailin ZHAO;Yanmin DUAN;Yingjie CHEN;Muquan WU;Kaixuan YE;Xiang ZHU;Guozhong DENG;Shaocheng LIU;Yumin WANG;Xiaoju LIU;Long ZENG;Liang WANG;Qing ZANG;Yuanxi WAN;Xiang GAO;EAST Team(College of Physics and Optoelectronic Engineering,Shenzhen University,Shenzhen 518060,People's Republic of China;Advanced Energy Research Center,Shenzhen University,Shenzhen 518060,People's Republic of China;Institute of Plasma Physics,Chinese Academic Sciences,Hefei 230031,People's Republic of China;Hebei Key Laboratory of Compact Fusion,ENN Science and Technology Development Co.,Ltd.,Langfang 065001,People's Republic of China)
出处 《Plasma Science and Technology》 SCIE EI CAS CSCD 2021年第11期18-25,共8页 等离子体科学和技术(英文版)
基金 supported by Shenzhen Clean Energy Research Institute supported by the National Key R&D Program of China (No. 2017YFE0301205) National Natural Science Foundation of China (Nos. 11875289, 11975271, 11605244, 11675211, 12075284, 12075283, 12075155 and 11875294)
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