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离焦量对空气中激光诱导铜等离子体光谱特性的影响
引用本文:乔红贞,苏茂根,袁萍,申晓志,郭逸潇,赵学燕.离焦量对空气中激光诱导铜等离子体光谱特性的影响[J].原子与分子物理学报,2009,26(5):864-868.
作者姓名:乔红贞  苏茂根  袁萍  申晓志  郭逸潇  赵学燕
作者单位:1. 西北师范大学物理与电子工程学院,兰州,730070
2. 邯郸学院物理与电气工程系,邯郸,056005
基金项目:国家自然科学基金(No.40475007)
摘    要:利用Nd: YAG脉冲激光在空气中烧蚀金属Cu靶,获得等离子体光谱;采用改变离焦量的方法,研究了离焦量的变化对谱线结构及谱线强度的影响;分析了离焦量分别为1mm、0mm和-2mm时,沿靶面法线方向不同空间距离处电子温度的演化规律;并对等离子体光谱的特性和产生机制进行了讨论. 结果表明,谱线结构、谱线强度和等离子体的电子温度都与离焦量的变化密切相关,聚焦点在-2mm处CuⅠ谱线相对强度出现峰值,电子温度数值最大;聚焦点在-0.5mm和-1.0mm附近谱线相对强度遽然降低的现象是由于等离子体的屏蔽效应造成的.

关 键 词:激光产生等离子体  发射光谱  电子温度
修稿时间:1/3/2009 12:00:00 AM

Influence of Defocusing Distance on the Laser-Induced Cu Plasma in Air
Qiao Hong-Zhen,Su Mao-Gen,Yuan Ping,Shen Xiao-Zhi,Guo Yi-Xiao and Zhao Xue-Yan.Influence of Defocusing Distance on the Laser-Induced Cu Plasma in Air[J].Journal of Atomic and Molecular Physics,2009,26(5):864-868.
Authors:Qiao Hong-Zhen  Su Mao-Gen  Yuan Ping  Shen Xiao-Zhi  Guo Yi-Xiao and Zhao Xue-Yan
Institution:Northwest Normal University,,Northwest Normal University,College of Physics and Electronic Engineering, Handan College,,
Abstract:The plasma spectra have been measured with a pulsed Nd: YAG laser which induced plasma from a metal copper target. Varying defocusing distance the influence of the relative intensity and spectral structure in various laser focusing distances from the target is studied. Space distribution characters of electron temperature are measured with defocusing distances at 1mm before target, 0mm on the sample surface, and 2mm back the sample. At the same time we analyze the plasma characteristics and mechanism. The results show that the spectral structure, spectral intensity and electron temperature prominently depend on the defocusing distances. The focusing position 2mm back the sample surface can be found that produces the maximum of copper atom spectra intensity and the electron temperature maximum. And the phenomena that the spectral intensities fall off at the the focusing position 0.5mm and 1.0mm below the sample surface can be interpreted by the shielding effect.
Keywords:laser produced plasma  emission spectra  electron temperature
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