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Self-pumped and mutually pumped phase conjugation using pentagon-shaped BaTiO3 crystal
Chang, CC ; Chen, TC ; Yau, HF ; Ye, PX
刊名OPTICAL MATERIALS
2001
卷号18期号:1页码:143
关键词INTERNAL-REFLECTION INCOHERENT BEAMS MIRROR CONFIGURATION
ISSN号0925-3467
通讯作者Chang, CC (reprint author), Chung Cheng Inst Technol, Dept Appl Phys, Tao Yuan 33509, Taiwan.
中文摘要Tokamak experimental research in China has made important progress. The main efforts were related to quasi-steady-state operation, LHCD, plasma heating with ICRF, IBW, NBI and ECRH, fuelling with pellets and supersonic molecular beams, and first wall conditioning techniques. Plasma parameters in the experiments were much improved, for example n(e) = 8 x 10(19) m(-3) and a plasma pulse length of > 10 s were achieved. ICRF boronization and conditioning resulted in Z(eff) close to unity. Steady state full LH wave current drive has been achieved for more than 3 s. LHCD ramp-up and recharge have also been demonstrated. The best eta (exp)(CD) approximate to 0.5(1 + 0.085 exp(4.8(B-T - CD, 1.45)))n(e)I(CD)R(p)/P-LH = 10(19) m(-2) A W-1. Quasi-steady-state H-mode-like plasmas with a density close to the Greenwald limit were obtained by LHCD, where the energy confinement time was nearly five times longer than in the ohmic case. The synergy between IBW, pellet and LHCD was tested. Research on the mechanism of macroturbulence has been extensively carried out experimentally. AC tokamak operation has been successfully demonstrated.
收录类别SCI
语种英语
公开日期2013-09-24
内容类型期刊论文
源URL[http://ir.iphy.ac.cn/handle/311004/52454]  
专题物理研究所_物理所公开发表论文_物理所公开发表论文_期刊论文
推荐引用方式
GB/T 7714
Chang, CC,Chen, TC,Yau, HF,et al. Self-pumped and mutually pumped phase conjugation using pentagon-shaped BaTiO3 crystal[J]. OPTICAL MATERIALS,2001,18(1):143.
APA Chang, CC,Chen, TC,Yau, HF,&Ye, PX.(2001).Self-pumped and mutually pumped phase conjugation using pentagon-shaped BaTiO3 crystal.OPTICAL MATERIALS,18(1),143.
MLA Chang, CC,et al."Self-pumped and mutually pumped phase conjugation using pentagon-shaped BaTiO3 crystal".OPTICAL MATERIALS 18.1(2001):143.
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