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飞秒激光诱导铝等离子体时间分辨光谱研究
引用本文:王福生,张培,樊建梅,张先燚,季学韩,郑贤锋,郑荣儿,崔执凤. 飞秒激光诱导铝等离子体时间分辨光谱研究[J]. 原子与分子物理学报, 2009, 26(6): 1087-1092. DOI: 10.3969/j.issn.1000-0364.2009.06.019
作者姓名:王福生  张培  樊建梅  张先燚  季学韩  郑贤锋  郑荣儿  崔执凤
作者单位:1. 安徽师范大学原子与分子物理研究所,芜湖,241000
2. 中国海洋大学光学光电子实验室,青岛,266071
摘    要:在大气环境下利用中心波长800nm、脉宽为30fs的激光聚焦在铝靶上,测定了激光诱导铝等离子体中铝原子的时间分辨发射谱。在局部热平衡条件近似下,根据实验测定的谱线相对强度得到了等离子体的电子温度;研究了激光脉冲能量对等离子体电子温度的影响和等离子体电子温度的时间演化特性。同时,实验发现了394.4nm和396.1nm两条铝原子谱线存在较强的自吸收效应,实验结果表明随着激光脉冲能量的减少和延时的增加,自吸收现象逐渐消失。

关 键 词:飞秒激光等离子体;电子温度;时间分辨谱;自吸收
修稿时间:2009-03-09

An Investigation on the Time-resolved Spectrum of the Femtosecond Laser-induced Al Plasma
Wang Fusheng,Zhang PEI,Fan Jian-mei,Zhang Xianyi,Ji Xue-han,Zheng Xian-feng,Zheng Rong-er and Cui Zhi-feng. An Investigation on the Time-resolved Spectrum of the Femtosecond Laser-induced Al Plasma[J]. Journal of Atomic and Molecular Physics, 2009, 26(6): 1087-1092. DOI: 10.3969/j.issn.1000-0364.2009.06.019
Authors:Wang Fusheng  Zhang PEI  Fan Jian-mei  Zhang Xianyi  Ji Xue-han  Zheng Xian-feng  Zheng Rong-er  Cui Zhi-feng
Affiliation:Institute of Atomic and Molecular Physics, Anhui Normal University,Institute of Atomic and Molecular Physics, Anhui Normal University
Abstract:The time-resolved spectrum of Al atom in laser-induced Al plasmas was measured by focusing 30 femtosecond laser pulse with wavelength 800nm on Al target in ambient air. Under the approximation of local thermodynamic equilibrium, the electron temperature was calculated from the measured relative intensity of emission spectral line. The influence of laser pulse energy on the electron temperature and the temporal evolution of electron temperature were studied. It is found from the experiment that the self-absorption effection is obvious for the 394.4nm and 396.1nm spectral lines of Al atom. It also can be concluded that the self-absorption of the spectral lines will gradually disappear with the decrease of the laser pulse energys and the increase of the time delay.
Keywords:Femtosecond laser-induced plasma   Electron temperature   Time-resoved spectroscopy   Self-absorption
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