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纳秒和亚纳秒光学分幅图像记录系统
引用本文:刘春平,龚向东,黄虹宾,李景镇.纳秒和亚纳秒光学分幅图像记录系统[J].强激光与粒子束,2010,22(7).
作者姓名:刘春平  龚向东  黄虹宾  李景镇
作者单位:深圳大学 深圳市微纳光子信息技术重点实验室, 广东 深圳 518060
基金项目:国家自然科学基金项目,深圳市科技局资助课题 
摘    要:提出了一种光学亚纳秒分幅时间多幅数字图像记录系统,能够满足激光飞片和爆磁箍缩等极端条件下,对频率在108~1010Hz的高速摄影需求。介绍了系统的设计方案和工作原理,提出了制约系统指标的关键技术如精密同步、高速高压脉冲源及解决方案。利用后台集中控制加上高精度的延迟单元提供各子系统的精密同步,利用雪崩三极管阵列构造纳秒和亚纳秒级的高压脉冲源驱动电光晶体偏转,利用8位可编程模拟延迟器件DS1023-25和FPGA器件结合获得ps精度的时间延迟。实验获得了幅度4 000 V、前沿小于5 ns的脉冲,任意时长、ps级精度的同步单元,对各子系统的同步协同工作也进行了调试。

关 键 词:光学分幅  精密同步  高压脉冲  时间延迟
收稿时间:1900-01-01;

Nano and sub-nanosecond optical image framing recording system
Liu Chunping,Gong Xiangdong,Huang Hongbin,Li Jingzhen.Nano and sub-nanosecond optical image framing recording system[J].High Power Laser and Particle Beams,2010,22(7).
Authors:Liu Chunping  Gong Xiangdong  Huang Hongbin  Li Jingzhen
Institution:Shenzhen Key Laboratory of Micro-nano Photonic Information Technology, Shenzhen University, Shenzhen 518060, China
Abstract:A nano and sub-nanosecond optical image framing recording system is presented here to meet the photography demands of 108~1010 Hz frequency in extreme conditions, such as laser flyer and Z-pinch. The overall system design and its principle are introduced. Several key techniques and solutions (such as precise synchronization, high voltage pulser etc). are put forward. The precise synchronization of sub-systems is carried out by a microcomputer and some precise delay units. Nano and sub-nanosecond rise time high voltage pulses are provided by an avalanche transistor array. Picosecond level time delay is generated by 8-bit programmable analog delay chip DS1023-25 and FPGA. Some key experiments have been completed and the experiment results such as 4 000 V high voltage pulse of rise time less
Keywords:precise synchronization  high voltage pulse  time delay
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