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Featured researches published by Y. Yang.


Review of Scientific Instruments | 2014

Optical layout and mechanical structure of polarimeter-interferometer system for Experimental Advanced Superconducting Tokamak.

Z. Y. Zou; H.Q. Liu; Yu Jie; W. X. Ding; D. L. Brower; Zhuan Wang; J. S. Shen; Z. H. An; Y. Yang; Lingwen Zeng; X.C. Wei; Guanjia Li; X. B. Zhu; T. Lan

A Far-InfaRed (FIR) three-wave POlarimeter-INTerferometer (POINT) system for measurement current density profile and electron density profile is under development for the EAST tokamak. The FIR beams are transmitted from the laser room to the optical tower adjacent to EAST via ∼20 m overmoded dielectric waveguide and then divided into 5 horizontal chords. The optical arrangement was designed using ZEMAX, which provides information on the beam spot size and energy distribution throughout the optical system. ZEMAX calculations used to optimize the optical layout design are combined with the mechanical design from CATIA, providing a 3D visualization of the entire POINT system.


Review of Scientific Instruments | 2016

Initial measurements of plasma current and electron density profiles using a polarimeter/interferometer (POINT) for long pulse operation in EAST (invited)

H.Q. Liu; J. Qian; Yu Jie; W. X. Ding; D. L. Brower; Z. Y. Zou; W.M. Li; H. Lian; Shaofeng Wang; Y. Yang; Lingwen Zeng; T. Lan; Yong-Gang Yao; L. Q. Hu; X. D. Zhang; B. N. Wan

A double-pass, radially viewing, far-infrared laser-based POlarimeter-INTerferometer (POINT) system utilizing the three-wave technique has been implemented for diagnosing the plasma current and electron density profiles in the Experimental Advanced Superconducting Tokamak (EAST). POINT has been operated routinely during the most recent experimental campaign and provides continuous 11 chord line-integrated Faraday effect and density measurement throughout the entire plasma discharge for all heating schemes and all plasma conditions (including ITER relevant scenario development). Reliability of both the polarimetric and interferometric measurements is demonstrated in 25 s plasmas with H-mode and 102 s long-pulse discharges. Current density, safety factor (q), and electron density profiles are reconstructed using equilibrium fitting code (EFIT) with POINT constraints for the plasma core.


Review of Scientific Instruments | 2012

Development of DRAGON electron cyclotron resonance ion source at Institute of Modern Physics

W. Lu; D. Z. Xie; X. Z. Zhang; B. Xiong; L. Ruan; S. Sha; Wei Zhang; Y. Cao; S. H. Lin; Jie Guo; X. Fang; X. H. Guo; X. X. Li; H. Y. Ma; Y. Yang; Q. Wu; H. Y. Zhao; Biao Ma; H. Q. Wang; Yizhi Zhu; Y. C. Feng; J. Y. Li; J. Q. Li; L. T. Sun; H. W. Zhao

A new room temperature electron cyclotron resonance (ECR) ion source, DRAGON, is under construction at IMP. DRAGON is designed to operate at microwaves of frequencies of 14.5-18 GHz. Its axial solenoid coils are cooled with evaporative medium to provide an axial magnetic mirror field of 2.5 T at the injection and 1.4 T at the extraction, respectively. In comparison to other conventional room temperature ECR ion sources, DRAGON has so far the largest bore plasma chamber of inner diameter of 126 mm with maximum radial fields of 1.4-1.5 T produced by a non-Halbach permanent sextupole magnet.


Review of Scientific Instruments | 2016

High intensity high charge state ion beam production with an evaporative cooling magnet ECRIS

W. Lu; C. Qian; L. T. Sun; X. Z. Zhang; X. Fang; Jie Guo; Y. Yang; Y. C. Feng; Biao Ma; B. Xiong; L. Ruan; H. W. Zhao; W.L. Zhan; D. Xie

LECR4 (Lanzhou ECR ion source No. 4) is a room temperature electron cyclotron resonance ion source, designed to produce high current, high charge state ion beams for the SSC-LINAC injector (a new injector for sector separated cyclotron) at the Institute of Modern Physics. LECR4 also serves as a PoP machine for the application of evaporative cooling technology in accelerator field. To achieve those goals, LECR4 ECR ion source has been optimized for the operation at 18 GHz. During 2014, LECR4 ion source was commissioned at 18 GHz microwave of 1.6 kW. To further study the influence of injection stage to the production of medium and high charge state ion beams, in March 2015, the injection stage with pumping system was installed, and some optimum results were produced, such as 560 eμA of O(7+), 620 eμA of Ar(11+), 430 eμA of Ar(12+), 430 eμA of Xe(20+), and so on. The comparison will be discussed in the paper.


Review of Scientific Instruments | 2014

Design of vibration compensation interferometer for Experimental Advanced Superconducting Tokamaka)

Y. Yang; Guanjia Li; H.Q. Liu; Yu Jie; W. X. Ding; D. L. Brower; X. B. Zhu; Zhuan Wang; Lingwen Zeng; Z. Y. Zou; X.C. Wei; T. Lan

A vibration compensation interferometer (wavelength at 0.532 μm) has been designed and tested for Experimental Advanced Superconducting Tokamak (EAST). It is designed as a sub-system for EAST far-infrared (wavelength at 432.5 μm) poloarimeter/interferometer system. Two Acoustic Optical Modulators have been applied to produce the 1 MHz intermediate frequency. The path length drift of the system is lower than 2 wavelengths within 10 min test, showing the system stability. The system sensitivity has been tested by applying a periodic vibration source on one mirror in the system. The vibration is measured and the result matches the source period. The system is expected to be installed on EAST by the end of 2014.


Review of Scientific Instruments | 2016

Preliminary consideration of CFETR ITER-like case diagnostic system

G. S. Li; Y. Yang; Y. M. Wang; Tingfeng Ming; Xiaofeng Han; S. Liu; Erhui Wang; Yuzhe Liu; Wenjun Yang; Guoqiang Li; Qingsheng Hu; Xinliang Gao

Chinese Fusion Engineering Test Reactor (CFETR) is a new superconducting tokamak device being designed in China, which aims at bridging the gap between ITER and DEMO, where DEMO is a tokamak demonstration fusion reactor. Two diagnostic cases, ITER-like case and towards DEMO case, have been considered for CFETR early and later operating phases, respectively. In this paper, some preliminary consideration of ITER-like case will be presented. Based on ITER diagnostic system, three versions of increased complexity and coverage of the ITER-like case diagnostic system have been developed with different goals and functions. Version A aims only machine protection and basic control. Both of version B and version C are mainly for machine protection, basic and advanced control, but version C has an increased level of redundancy necessary for improved measurements capability. The performance of these versions and needed R&D work are outlined.


Review of Scientific Instruments | 2012

A 2.45 GHz electron cyclotron resonance proton ion source and a dual-lens low energy beam transporta)

Wei Zhang; H. Y. Ma; Y. Yang; Q. Wu; X. Z. Zhang; H. Q. Wang; Biao Ma; Y. C. Feng; X. Fang; Jie Guo; Y. Cao; X. X. Li; Yizhi Zhu; J. Y. Li; S. Sha; W. Lu; S. H. Lin; X. H. Guo; H. Y. Zhao; L. T. Sun; D. Z. Xie; S. X. Peng; Z. W. Liu; H. W. Zhao

The structure and preliminary commissioning results of a new 2.45 GHz ECR proton ion source and a dual-lens low energy beam transport (LEBT) system are presented in this paper. The main magnetic field of the ion source is provided by a set of permanent magnets with two small electro-solenoid magnets at the injection and the extraction to fine tune the magnetic field for better microwave coupling. A 50 keV pulsed proton beam extracted by a three-electrode mechanism passes through the LEBT system of length of 1183 mm. This LEBT consists of a diagnosis chamber, two Glaser lenses, two steering magnets, and a final beam defining cone. A set of inner permanent magnetic rings is embedded in each of the two Glaser lenses to produce a flatter axial-field to reduce the lens aberrations.


Infrared Physics & Technology | 2014

Study of the propagation properties of 432 μm laser reflected by retro reflector array

T. Lan; H.Q. Liu; Yinxian Jie; Jinyuan Liu; Xiangrong Zhu; Zhuan Wang; Z. Y. Zou; G.S. Li; Y. Yang; Xiaoyi Wei; W.M. Li; H.B. Wang; Xinliang Gao; H. Qin


Journal of Luminescence | 2018

Effective enhancement of 2.87 µm fluorescence via Yb 3+ in Ho 3+ :LaF 3 laser crystal

Shanming Li; Lianhan Zhang; Mingzhu He; Guangzhu Chen; Peixiong Zhang; Y. Yang; Min Xu; Tao Yan; Ning Ye; Yin Hang


Infrared Physics & Technology | 2018

Growth and characterization of Yb:Ho:YAG single crystal fiber

Y. Yang; Linhua Ye; Renjie Bao; Shanming Li; Peixiong Zhang; Min Xu; Yin Hang

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H.Q. Liu

Chinese Academy of Sciences

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T. Lan

Chinese Academy of Sciences

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Z. Y. Zou

Chinese Academy of Sciences

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Lingwen Zeng

Chinese Academy of Sciences

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Yu Jie

Chinese Academy of Sciences

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Zhuan Wang

Chinese Academy of Sciences

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Biao Ma

Chinese Academy of Sciences

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Guanjia Li

Chinese Academy of Sciences

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H. W. Zhao

Chinese Academy of Sciences

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Jie Guo

Chinese Academy of Sciences

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