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Z-pinch内爆等离子体时空分辨诊断技术
引用本文:杨建伦,李正宏,徐荣昆,许泽平,李林波,宁家敏,王真,章法强,蒋世伦,郭存,夏广新,宋凤军,陈进川,钟耀华. Z-pinch内爆等离子体时空分辨诊断技术[J]. 强激光与粒子束, 2007, 19(2): 234-240
作者姓名:杨建伦  李正宏  徐荣昆  许泽平  李林波  宁家敏  王真  章法强  蒋世伦  郭存  夏广新  宋凤军  陈进川  钟耀华
作者单位:中国工程物理研究院 核物理与化学研究所, 四川 绵阳 621900
摘    要: 为了深入认识和理解Z-pinch物理机制并对物理实验进行优化设计,需要研究内爆等离子体及其辐射的时空分布特性诊断技术,建立诊断装置与设备,通过实验研究等离子体内爆时间过程及其空间分布特性,利用所获得的实验诊断数据校核数值模拟程序。简要介绍近几年开展的X光空间积分功率谱测量、X光时间积分针孔照相、X光时分幅针孔照相、X光时间分辨1维空间分布、紫外探针阴影照相等时空分辨诊断技术研究工作,并给出在1~3 MA电流驱动装置上进行的喷气和丝阵内爆实验中获得的部分时空分辨诊断结果,包括辐射功率、拉链速度、内爆速度、收缩比等。

关 键 词:Z-pinch  等离子体诊断  时空分辨  平响应  光纤阵列  激光探针
文章编号:1001-4322(2007)02-0234-07
收稿时间:2006-12-20
修稿时间:2006-12-20

Time-space-resolved diagnostic technique for Z-pinch plasma investigation
YANG Jian-lun,LI Zheng-hong,XU Rong-kun,XU Ze-ping,LI Lin-bo,NING Jia-min,WANG Zhen,ZHANG Fa-qiang,JIANG Shi-lun,GUO Cun,XIA Guang-xin,SONG Feng-jun,CHEN Jin-chuan,ZHONG Yao-hua. Time-space-resolved diagnostic technique for Z-pinch plasma investigation[J]. High Power Laser and Particle Beams, 2007, 19(2): 234-240
Authors:YANG Jian-lun  LI Zheng-hong  XU Rong-kun  XU Ze-ping  LI Lin-bo  NING Jia-min  WANG Zhen  ZHANG Fa-qiang  JIANG Shi-lun  GUO Cun  XIA Guang-xin  SONG Feng-jun  CHEN Jin-chuan  ZHONG Yao-hua
Affiliation:Institute of Nuclear Physics and Chemistry, CAEP, P.O.Box 919-212, Mianyang 621900, China
Abstract:In order to further understand the Z-pinch physical process and to optimize the experimental design,it is necessary to develop time-space-resolved diagnostic technique and corresponding equipments for investigation of imploding plasma and radiation distribution.Based on these diagnostic technique and equipments,experimental studies of plasma imploding process and spatial distribution can be conducted,which provide experimental verifications of numerical simulations.A brief summary of recent researches on the time-space-resolved diagnostic technique is given,including spatially integrated time-dependent X-ray power measurement,temporally integrated X-ray pinhole photography,X-ray framing photography,time-resolved 1D imaging,and plasma shadowgraph using UV laser probing.Typical experimental results obtained in gas-puff and wire-array experiments on 1~3 MA facilities are also presented,including radiation power,zipper velocity,imploding velocity,convergence ratio,etc.
Keywords:Z-pinch
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