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4路GW级纳秒脉冲源同步技术实验研究
引用本文:王俊杰,朱四桃,周金山,朱郁丰,石磊.4路GW级纳秒脉冲源同步技术实验研究[J].强激光与粒子束,2011,23(11).
作者姓名:王俊杰  朱四桃  周金山  朱郁丰  石磊
作者单位:西北核技术研究所, 西安 710024
摘    要: 利用峰值功率可达1 GW的纳秒脉冲源CKP1000开展了4路GW级纳秒脉冲源同步技术实验研究。使用trigatron作为触发开关,通过单路开关触发特性实验研究优化了开关的结构与工作参数,单路开关抖动0.2 ns,建立了实验装置,实现了4路GW级纳秒脉冲源并联同步输出。同步实验结果为: 纳秒脉冲源输出电压230 kV,峰值功率1 GW,脉冲宽度6 ns,4路输出脉冲同步偏差95%以上概率分布在1 ns以内,平均同步偏差630 ps。

关 键 词:纳秒脉冲源  同步技术  trigatron  触发开关  Tesla变压器
收稿时间:1900-01-01;

Experimental research on synchronized operation of 4 parallel-connected 1 GW nanosecond pulse generators
Wang Junjie , Zhu Sitao , Zhou Jinshan , Zhu Yufeng , Shi Lei.Experimental research on synchronized operation of 4 parallel-connected 1 GW nanosecond pulse generators[J].High Power Laser and Particle Beams,2011,23(11).
Authors:Wang Junjie  Zhu Sitao  Zhou Jinshan  Zhu Yufeng  Shi Lei
Institution:(Northwest Institute of Nuclear Technology, P.O.Box 69-13, Xi’an 710024, China)
Abstract:Experimental research on synchronized operation of 4 parallel-connected 1 GW nanosecond pulse generators is presented. With trigatron as trigger switch, the synchronized operation is successfully achieved. The jitter time of trigation is 0.2 ns. The mutual spread of four 6 ns wide pulses is lower than 1 ns (probability above 95%) with an average value of 630 ps at a peak power of 1 GW (230 kV on 50 Ω load) of each parallel-connected module.
Keywords:nanosecond pulse source  synchronization technology  trigatron  trigger switch  Tesla transformer  
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