《Plasma Science and Technology》

作品数:4395被引量:2974H指数:12
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《Plasma Science and Technology》
主办单位:中国科学院合肥物质科学研究院;中国力学学会
最新期次:2025年3期更多>>
发文主题:PLASMATOKAMAKEASTDISCHARGEDIELECTRIC_BARRIER_DISCHARGE更多>>
发文领域:理学核科学技术电子电信电气工程更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划中国博士后科学基金国家高技术研究发展计划更多>>
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《Plasma Science and Technology》2025年第3期I0003-I0003,共1页
Plasma Science and Technology (PST) journal assists in advancing plasma science and technology by reporting important,novel,helpful and thought-provoking progress in this strongly multidisciplinary and interdisciplina...
关键词:CONFINED FOUNDATION REPORTING 
The co-excitation of electrostatic ion-cyclotron wave and ion-Bernstein-like wave launched from a grid
《Plasma Science and Technology》2025年第3期1-9,共9页Hongyu SUN Jinxiu MA Yaodong ZHAO Wan TAO Qi LIU 
supported by National Natural Science Foundation of China (No.11975229)。
Electrostatic ion-cyclotron wave(EICW)and ion-Bernstein wave(IBW)are two typical normal modes of plasma propagating vertically to a magnetic field.These modes satisfy the extreme conditionsω《k_(||)v_(te)andω》k_(||...
关键词:electrostatic ion-cyclotron wave ion-Bernstein-like wave dispersion relation 
Numerical study of runaway current impact on sawtooth oscillations in tokamaks
《Plasma Science and Technology》2025年第3期10-21,共12页Ruirui MA Chen ZHAO Yao ZHOU Chang LIU 
supported in part by the National Key R&D Program of China (No.2022YFE03040002);the Natural Science Foundation of Sichuan (No.2022NSFSC1814);National Natural Science Foundation of China (Nos.12305246,12175053 and 12261131622);the Italian Ministry of Foreign Affairs (No.CN23GR02);the Fundamental Research Funds for the Central Universities;supported by US Department of Energy (No.DE-AC0209CH11466)。
This study investigates the influence of runaway current in runaway plasmas on the dynamics of sawtooth oscillations and resultant loss of runaway electrons(RE)using the 3D magnetohydrodynamic(MHD)code M3D-C^(1)(Jardi...
关键词:DISRUPTION runaway current sawtooth oscillations RE loss 
Magnetohydrodynamic simulation study of impurity radiation-excited and driven tearing mode
《Plasma Science and Technology》2025年第3期22-29,共8页Yiming ZU Zhiwei MA Yuchen XU 
supported by the National Magnetic Confinement Fusion Energy R&D Program of China (Nos.2019YFE03030004 and 2022YFE03100001)。
Tearing modes may play an important role in the density limit disruption.The Magnetohydrodynamic(MHD)code CLT with impurity modules is used to study the tearing mode excited and driven by impurity radiation.The impuri...
关键词:impurity radiation tearing mode MHD simulation 
Influence of 3D helical magnetic perturbations on runaway electron generation in J-TEXT tokamak
《Plasma Science and Technology》2025年第3期36-44,共9页Wei YAN Guinan ZOU Zhongyong CHEN You LI Jiangang FANG Zhifang LIN Zhonghe JIANG Nengchao WANG Bo RAO Yangbo LI Zhengkang REN Chuanxu ZHAO Yu ZHONG Fanxi LIU Yinlong YU Zisen NIE Xun ZHOU Yuan SHENG Yuwei SUN Song ZHOU Xiaoqing ZHANG Zhoujun YANG Zhipeng CHEN Yonghua DING the J-TEXT Team 
supported by the National Magnetic Confinement Fusion Energy R&D Program of China (Nos.2018YFE0309103 and 2019YFE03010004);National Natural Science Foundation of China (Nos.12475222,12205122,and 51821005);Hubei International Science and Technology Cooperation Projects (No.2022EHB003)。
A large number of runaway electrons(REs)generated during disruption can cause significant damage to next-generation large-scale tokamaks.The influence of three-dimensional(3D)helical magnetic perturbations on the supp...
关键词:3D helical magnetic perturbations runaway electron J-TEXT tokamak 
Numerical studies of the voltage amplitude effect on plasma characteristics in atmospheric pressure driven by dual LF-RF frequency discharge
《Plasma Science and Technology》2025年第3期45-54,共10页Yilin YU Zhibo ZHAO Qiuyue NIE Shu CHEN Zhonglin ZHANG 
supported by National Natural Science Foundation of China (Nos.52377141 and 92371105)。
Dielectric barrier discharges(DBDs)are primarily utilized as efficient sources of large-volume diffuse plasmas.However,the synergistic interaction of certain key plasma factors limits their broader application.In the ...
关键词:dielectric barrier discharge atmospheric pressure plasma electron dynamics behavior 
Regulation of the pantograph-catenary arc by an alternating transverse magnetic field
《Plasma Science and Technology》2025年第3期55-62,共8页Zefeng YANG Chun HUANG Yunfeng LUO Zhiwen HUANG Langyu XIA Huan ZHANG Shangang ZHOU Keliang DONG Wenfu WEI 
supported by National Natural Science Foundation of China (Nos.52322704 and 52077182)。
The pantograph-catenary arc has persistently posed a challenge,impeding the advancement of high-speed rail systems.As the velocity of high-speed trains continues to escalate and environmental conditions become increas...
关键词:ARC PLASMA ATMF pantograph-catenary system 
Optimization of electron beams for ion bombardment secondary emission electron gun
《Plasma Science and Technology》2025年第3期63-71,共9页Zebin WANG Junbiao LIU Aiguo CHEN Dazheng WANG Pengfei WANG Li HAN 
Electron beam fluorescence technology is an advanced non-contact measurement in rarefied flow fields,and the fluorescence signal intensity is positively correlated with the electron beam current.The ion bombardment se...
关键词:air plasma secondary emission electron gun electron beam performance optimization 
Method to improve the classification accuracy by in situ laser cleaning of painted metal scraps during laser-induced breakdown spectroscopy based sorting
《Plasma Science and Technology》2025年第3期72-86,共15页Jaepil LEE Sungho SHIN Inseok JANG Seongguk BAE Sungho JEONG 
supported by the R&D Center for Valuable Recycling (Global-Top R&D Program)of the Ministry of Environment (No.2016002250003)。
Scrap metals are typically covered with surface contaminants,such as paint,dust,and rust,which can significantly affect the emission spectrum during laser-induced breakdown spectroscopy(LIBS)based sorting.In this stud...
关键词:laser induced breakdown spectroscopy(LIBS) scrap metal PAINT surface contaminant CLEANING 
Ultra-simplified design and quantitative analysis for the optical system of compact laser-induced breakdown spectroscopy
《Plasma Science and Technology》2025年第3期87-93,共7页Jiujiang YAN Ke LIU Jinxiu MA Yang LI Kailong LI Hongwei WEI 
financially supported by National Natural Science Foundation of China (Nos.62305392 and 62305123);Independent Research and Development Project of Naval Engineering University (No.2023504050);the Nursery Plan Project of Navel University of Engineering (2022)。
Optimization and simplification of optical systems represent a milestone in advancing the development of handheld and portable laser-induced breakdown spectroscopy(LIBS)systems towards smaller,more integrated forms.Th...
关键词:compact LIBS optical path design spectral stability quantitative analysis 
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