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Development of double-foil soft X-ray array imaging(DSXAI)diagnostic on HL-2A tokamak
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作者 Hangqi XU Tao LAN +34 位作者 Min XU Zhanhui WANG Lin NIE Jie WU Sen ZHANG Yiming ZU Yi LIU Yunbo DONG Wenzhe MAO Chen CHEN Jiaren WU Pengcheng LU Tianxiong WANG Qilong DONG Yongkang ZHOU Peng DENG Xingkang WANG Zeqi BAI Yuhua HUANG Zian WEI Hai WANG Xiaohui WEN Haiyang ZHOU Chu ZHOU Ahdi LIU Zhengwei WU Jinlin XIE Hong LI Chijin XIAO Weixing DING Wei CHEN Wulyu ZHONG Xuru DUAN Wandong LIU Ge ZHUANG 《Plasma Science and Technology》 2025年第3期30-35,共6页
A 100-channel double-foil soft X-ray array imaging(DSXAI)diagnostic system has been developed for the HL-2A tokamak to obtain tomographic bremsstrahlung emissivity and electron temperature(T_(e)).This system employs a... A 100-channel double-foil soft X-ray array imaging(DSXAI)diagnostic system has been developed for the HL-2A tokamak to obtain tomographic bremsstrahlung emissivity and electron temperature(T_(e)).This system employs a double-foil technique to determine T_(e) by comparing the soft X-ray(SXR)emissivities from the same plasma location through two beryllium(Be)foils of differing thickness.The DSXAI system comprises five photocameras mounted at two different poloidal cross-sections,separated toroidally by 15°,allowing for three distinct poloidal viewing angles.Each photocamera features 20 channels,offering a temporal resolution of approximately 4μs and a spatial resolution of about 8 cm,with no channel overlap.Each photocamera contains two identical optical systems,each defined by an aperture slit and a photodiode array.The double-foil configuration is realized by placing these two optical systems,each with a different Be foil,in close proximity.Initial experimental results demonstrate that the DSXAI diagnostic system performs well,successfully reconstructing 2-dimensional(2D)tomographic SXR emissivity and T_(e) on the HL-2A tokamak.This study provides valuable insights for the future implementation of similar diagnostic systems on fusion reactors like ITER. 展开更多
关键词 double-foil soft X-ray photocamera bremsstrahlung emissivity electron temperature
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Plasma-enhanced Deposition of Nano-Structured Carbon Films
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作者 杨巧勤 肖持进 A.Hirose 《Plasma Science and Technology》 SCIE EI CAS CSCD 2005年第1期2660-2664,共5页
By pre-treating substrate with different methods and patterning the catalyst, selective and patterned growth of diamond and graphitic nano-structured carbon films have been realized through DC Plasma-Enhanced Hot Fila... By pre-treating substrate with different methods and patterning the catalyst, selective and patterned growth of diamond and graphitic nano-structured carbon films have been realized through DC Plasma-Enhanced Hot Filament Chemical Vapor Deposition (PE-HFCVD). Through two-step processing in an HFCVD reactor, novel nano-structured composite diamond films containing a nanocrystalline diamond layer on the top of a nanocone diamond layer have been synthesized. Well-aligned carbon nanotubes, diamond and graphitic carbon nanocones with controllable alignment orientations have been synthesized by using PE-HFCVD. The orientation of the nanostructures can be controlled by adjusting the working pressure. In a Microwave Plasma Enhanced Chemical Vapor Deposition (MW-PECVD) reactor, high-quality diamond films have been synthesized at low temperatures (310℃-550℃) without adding oxygen or halogen gas in a newly developed processing technique. In this process, carbon source originates from graphite etching, instead of hydrocarbon. The lowest growth temperature for the growth of nanocrystalline diamond films with a reasonable growth rate without addition of oxygen or halogen is 260℃. 展开更多
关键词 NANOCRYSTALLINE NANOTUBE NANOCONE diamond film graphitic carbon film microwave CVD hot filament CVD
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A Dip Structure in the Intrinsic Toroidal Rotation Near the Edge of the Ohmic Plasmas in EAST
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作者 徐国盛 V.NAULIN +20 位作者 万宝年 郭后扬 张炜 常加峰 颜宁 丁斯晔 张凌 王亮 刘少承 刘鹏 蒋敏 汪惠乾 J.Juul RASMUSSEN A.H.NIELSEN 肖持进 高翔 胡立群 朱思铮 吴振伟 钱金平 龚先祖 《Plasma Science and Technology》 SCIE EI CAS CSCD 2011年第4期397-404,共8页
Ion's toroidal velocity, vt, in both the outermost 4 cm of the confined region and the scrap-off layer of Ohmic L-mode plasmas in EAST was measured using Mach probes. At about 1 cm inside the separatrix a local minim... Ion's toroidal velocity, vt, in both the outermost 4 cm of the confined region and the scrap-off layer of Ohmic L-mode plasmas in EAST was measured using Mach probes. At about 1 cm inside the separatrix a local minimum in vt was observed, from which a cocurrent rotation increased both inwards and outwards. The radial width of the vt dip was 1 cm to 2 cm, and both the density and electron temperature profiles exhibited steep gradients at this dip position. It was observed in both divertor and limiter configurations. To find out its origin, the toroidal torques induced by neutral friction, neoclassical viscosity, collisional perpendicular shear viscosity, ion orbit loss and turbulent Reynolds stress were estimated using the measured parameters. Our results indicate that in this particular parameter regime the neutral friction was the dominant damping force. The calculated cocurrent toroidal torque by the neoclassical viscosity dominates over those from the collisional perpendicular shear viscosity, ion orbit loss and turbulent Reynolds stress. These results are potentially important for the understanding of boundary conditions for the intrinsic toroidal momentum in tokamak plasmas. 展开更多
关键词 intrinsic rotation turbulent Reynolds stress toroidal torques neutral friction
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Construction of an Hα diagnostic system and its application to determine neutral hydrogen densities on the Keda Torus eXperiment
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作者 Junfeng Zhu Tao Lan +18 位作者 Ge Zhuang Tijian Deng Jie Wu Hangqi Xu Chen Chen Sen Zhang Jiaren Wu Yiming Zu Hong Li Jinlin Xie Ahdi Liu Zixi Liu Zhengwei Wu Hai Wang Xiaohui Wen Haiyang Zhou Chijin Xiao Weixing Ding Wandong Liu 《Chinese Physics B》 SCIE EI CAS CSCD 2019年第10期428-434,共7页
A 10-channel Hα diagnostic system has been designed with the rapid response rate of 300 kHz, spatial resolution of about 40 mm, and overlap between adjacent channels of about 3%, and it has been implemented successfu... A 10-channel Hα diagnostic system has been designed with the rapid response rate of 300 kHz, spatial resolution of about 40 mm, and overlap between adjacent channels of about 3%, and it has been implemented successfully on Keda Torus eXperiment(KTX), a newly constructed, reversed field pinch(RFP) experimental device at the University of Science and Technology of China(USTC). This diagnostic system is a very important tool for the initial KTX operations. It is compact,with an aperture slit replacing the traditional optical lens system. A flexural interference filter is designed to prevent the center wavelength from shifting too much as the increase of angle from vertical incidence. To eliminate the stray light,the interior of the system is covered with the black aluminum foil having a very high absorptivity. Using the Hαemission data, together with the profiles of electron temperature and density obtained from the Langmuir probe, the neutral density profiles have been calculated for KTX plasmas. The rapid response rate and good spatial resolution of this Hαdiagnostic system will be beneficial for many studies in RFP plasma physics. 展开更多
关键词 DIAGNOSTIC NEUTRAL density Keda TORUS eXperiment(KTX) device
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Preliminary compact torus injection experiments on the Keda Torus eXperiment reversed field pinch
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作者 Tao LAN Chen CHEN +20 位作者 Chijin XIAO Weixing DING Jie WU Wenzhe MAO Sen ZHANG Defeng KONG Shoubiao ZHANG Zhengwei WU Qilong DONG Yongkang ZHOU Hangqi XU Jiaren WU Zian WEI Xiaohui WEN Hai WANG Chu ZHOU Adi LIU Hong LI Jinlin XIE Wandong LIU Ge ZHUANG 《Plasma Science and Technology》 SCIE EI CAS CSCD 2024年第10期56-64,共9页
A new compact torus injector(KTX-CTI)has been built for injection experiments on the Keda Torus eXperiment(KTX)reversed field pinch(RFP).The aim is to study the fundamental physics governing the compact torus(CT)centr... A new compact torus injector(KTX-CTI)has been built for injection experiments on the Keda Torus eXperiment(KTX)reversed field pinch(RFP).The aim is to study the fundamental physics governing the compact torus(CT)central fueling processes.In experiments conducted under the sole influence of a 0.1 T toroidal magnetic field,the injected CT successfully penetrated the entire toroidal magnetic field,reaching the inner wall of the KTX vacuum vessel.Upon reaching the inner wall,the CT diffused both radially outward and toroidally within the vessel at a discernible diffusion speed.Moreover,the inherent helicity within the CT induced a modest KTX plasma current of 200 A,consistent with predictions based on helicity conservation.CT injection demonstrated the capability to initiate KTX discharges at low loop voltages,suggesting its potential as a pre-ionization and current startup technique.During RFP discharges featuring CT injection,the central plasma density was found to exceed the Greenwald density limit,with more peaked density profiles,indicating the predominant confinement of CT plasma within the core region of the KTX bulk plasma. 展开更多
关键词 compact torus FUELING reversed field pinch density limit
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Fast radial scanning probe system on KTX
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作者 Tijian DENG Tao LAN +22 位作者 Mingsheng TAN Junfeng ZHU Jie WU Hangqi XU Chen CHEN Yolbarsop ADIL Sen ZHANG Jiaren WU Yiming ZU Wenzhe MAO Hong LI Jinlin Xie Ahdi LIU Zixi LIU Zhengwei WU Hai WANG Xiaohui WEN Haiyang ZHOU Zian WEI Chijin XIAO Weixing DING Ge ZHUANG Wandong LIU 《Plasma Science and Technology》 SCIE EI CAS CSCD 2020年第4期97-104,共8页
A fast radial scanning probe system was constructed for the Keda Torus eXperiment(KTX)to measure the profiles of boundary plasma parameters such as floating potential,electron density,temperature,transport fluxes,etc.... A fast radial scanning probe system was constructed for the Keda Torus eXperiment(KTX)to measure the profiles of boundary plasma parameters such as floating potential,electron density,temperature,transport fluxes,etc.The scanning probe system is driven by slow and fast motion mechanisms,corresponding to the stand-by movement of a stepping motor and the fast scanning movement of a high-torque servo-motor,respectively.In fast scanning,the scanner drives the probe radially up to 20 cm at a maximum velocity of 4.0 m s-1.A noncontact magnetic grating ruler with a high spatial resolution of 5μm is used for the displacement measurement.New scanning probe can reach the center of plasmas rapidly.The comparison of plasma floating potential profiles obtained by a fixed radial rake probe and the single scanning probe suggests that the high-speed scanning probe system is reliable for measuring edge plasma parameter profiles on the KTX device. 展开更多
关键词 RADIAL SCANNING probe high-speed MOVEMENT NONCONTACT magnetic GRATING RULER
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