张凌
文章来源: 发布时间: 2020-11-26

  

姓名:张凌

地址:合肥科学岛等离子体所

类型:

研究所:等离子体所

联系方式:0551-65593361,邮编:zhangling@ipp.ac.cn

导师介绍

    张凌,女,博士生导师,等离子体诊断研究室室务委员,国家自然科学基金优秀青年科学基金获得者。长期从事磁约束聚变等离子体领域研究,聚焦杂质光谱诊断技术研发与等离子体杂质输运及控制研究。担任EAST装置杂质输运物理实验协调人、BEST装置光谱诊断负责人、CFEDR加料与粒子控制工作组负责人;受邀兼任ITER国际组织托卡马克物理活动(ITPA)被动光谱诊断专家组组长、IAEA协同研究项目国际顾问专家。

    依托EAST装置成功搭建了高性能集成杂质诊断平台,创新发展了杂质光谱定量诊断核心技术,在此基础上开展了丰富的聚变等离子体杂质输运及控制研究,获得并验证了钨杂质集成控制手段,为EAST创造多项世界纪录作出重要贡献。主持多项国家级科研课题,包括2项科技部青年科学家项目、4项国家自然科学基金项目、2项中国科学院专项项目等。已授权专利3项、获批软件著作权3项,以第一作者、通讯作者身份发表学术论文40余篇,在国内外学术会议作大会报告、特邀报告10余次。

    积极推进高水平国际科研合作,搭建国际交流协作平台,同时深耕研究生育人工作,培育多名优秀毕业生。荣获中国科学院合肥物质科学研究院国际合作促进奖、 优秀导师等荣誉称号。协助合作的国际专家先后荣获安徽省黄山友谊奖、中国科学院国际科技合作奖、中国政府友谊奖。指导的研究生先后获得等离子体所所长奖学金优秀奖和特别奖、合肥物质科学研究院悦群品学兼优奖学金、博士研究生国家奖学金、中国科学院院长优秀奖、中国科学技术大学优秀博士论文、中国科学技术大学优秀毕业生等奖项与荣誉称号


研究领域

     磁约束聚变光谱诊断技术研发、等离子体杂质光谱模拟、等离子体杂质输运及控制的实验与模拟研究等


研究生招生专业

    等离子体物理,能源动力,核能工程,电子信息(欢迎有物理学、光学、光谱学、原子物理、电子信息学习和项目背景的本科生报考)


博士后招聘方向

    等离子体物理实验,等离子体输运模拟(包括集成模拟),等离子体光谱诊断,精密光学,高光谱成像,高Z元素原子过程研究,杂质元素原子光谱模拟,AI和机器学习辅助光谱图像处理和光谱分析


研究成果

近三年发表文章

[1]Yunxin Cheng,Ling Zhang*, Shigeru Morita et al., Performance improvement of space-resolved extreme ultraviolet spectrometer by use of complementary metal-oxide semiconductor detectors at the Experimental Advanced Superconducting Tokamak.Rev.Sci. Instrum.93,123501(2022).  

[2]Zihang Zhao,Ling Zhang*, Ruijie Zhou et al., Impurity Behavior in Plasma Recovery after a Vacuum Failure in the Experimental Advanced Superconducting Tokamak.Appl. Sci.2023, 13, 4338.

[3]Yunxin Cheng,Ling Zhang*, Shigeru Morita et al., Development of space-resolved EUV spectrometers working at 5–138 Å for profile observation of high-Z impurity ions in EAST plasma.Nuclear Instruments and Methods in Physics Research A1057 (2023) 168714

[4]Fengling Zhang,Ling Zhang*, Wenming Zhang et al., Line identification of extreme ultraviolet spectra from aluminum ions in EAST Tokamak plasmas.Phys. Scr.99 (2024) 025615

 [5]赵伟宽,张凌*,程云鑫等, EAST托卡马克钨杂质上下不对称性分布的实验研究.物理学报. 2024 73(3): 035201

[6]Wenmin Zhang,Ling ZhangFirst observation of edge impurity behavior with n = 1 RMP application in EAST L-mode plasma*, Yunxin Cheng et al.,.Nucl. Fusion64 (2024) 086004         

[7]Wenmin Zhang,Ling Zhang*, Shigeru Morita et al.,Spectroscopic analysis of tungsten spectra in extreme-ultraviolet range of 10-480 Å observed from EAST tokamak with full tungsten divertor.Phys. Scr.99 (2024) 105609

[8]Yunxin Cheng,Ling Zhang*, Ailan Hu et al., Experimental study on metallic impurity behavior with boronization wall conditioning in EAST tokamak.Nucl. Mater. Energy41(2024) 101744

 [9]Yunxin Cheng,Ling Zhang*(EAST) plasma.  , Shigeru Morita et al., The observation of tungsten unresolved transition arrays spectra at high electron temperature in Experimental Advanced Superconducting TokamakPlasma and Fusion Research, 20,240210 (2025)

 [10]Ling ZHANG*, Wenmin ZHANG, Yunxin CHENG et al., Observation and line analysis of tungsten, molybdenum and copper spectra at 20-150 Å emitted from Experimental Advanced Superconducting Tokamak (EAST) plasma.Plasma and Fusion Research20, 240211 (2025)

[11]Wenmin Zhang,Ling Zhang*, Shigeru Morita et al., Effective control of intrinsic impurities using n=1 resonant magnetic perturbation (RMP) in EAST H-mode plasma.Nucl. Mater. Energy, 41(2024)101822

[12]Zhen Zhou, Shengyu Shi*,Ling Zhanget al., Tungsten impurity reduction by ICRH in a high power injection and high performance H-mode discharge on EAST  .Nucl. Fusion65 (2025) 036004

 [13]Fengling Zhang, Darío Mitnik*,Ling ZhangEvaluation of tungsten influx rate using line emissions from W* et al.,5+ions in EAST tokamak  .Nucl. Fusion65 (2025) 036037

 [14] Yiming Cao, Yuan Yao*, Ling Zhang et al., A Design of ZYNQBased Intermediate Frequency Stabilization System by Using BP Neural Network PID, 2024 IE2CES IEEE

 [15] Yiming Cao, Ling Zhang, Yuan Yao* et al, Research on Frequency Stabilization Method of PID Controller Based on BP Neural Network Optimization for POINT system on EAST, 2025 JINST 20 C03005

[16]Yunxin Cheng,Ling Zhang*, Ailan Hu et al., Extreme ultraviolet spectrometers for fast observation of high-Z impurity line emissions and their radial profiles in the Experimental Advanced Superconducting Tokamak. 2025JINST20 C04016

[17]Wenmin Zhang,Ling Zhang*, Yuqi Chu* et al., Edge and Core Impurity Behavior and Transport in EAST H-mode Plasma with Internal Transport Barrier.Nucl. Fusion65 (2025) 052003

[18]Yunxin Cheng,Ling Zhang*, Chengxi Zhou* et al., Effect of 4.6 GHz LHW on tungsten transport in NBI dominant H-mode plasma in EAST tokamak.Nucl. Fusion65 (2025) 062003

[19]Z.W. Li, W.M. Zhang,L. Zhang* et al., Machine learning application to wavelength calibration for Extreme Ultraviolet (EUV) spectroscopy in EAST tokamak. 2025JINST20 C07002

[20]Jiu Yang Ma, Yun Xin Cheng*,Ling Zhanget al., First observation of full radial profile of Zeffusing a high-performance visible spectrometer in EAST tokamak with full tungsten divertors. 2025JINST20 C07016

[21]A. Hu, Y. Cheng,L. Zhang2025* et al.,A space-resolved visible spectrometer system using compact endoscopic optics for full vertical profile measurement of impurity line emissions in superconducting EAST tokamak.JINST20 C07022

[22]Chengxi ZHOU,Ling ZHANG*, Jiale CHEN* et al.,The transport and radiation loss of tungsten impurities in core plasma for CFEDR conventional H-mode scenario.Plasma Sci. Technol.27 (2025) 104008

 [23]Runjia Bao, Darío Mitnik,Ling Zhang* et al., Efficient modelling of tungsten x-ray and EUV emission under ITER plasma conditions.Nucl. Fusion66 (2026) 046030

[24]Yunxin Cheng*,Ling Zhang*, Runjia Bao et al.,Spectral observation and radial profile analysis of line emissions from W46+ions at 7-8 Å using extreme ultraviolet (EUV) spectrometers in EAST tokamak with full tungsten divertor  .Plasma Phys. Control. Fusion68 (2026) 045039