摘要
探测了脉冲能量0.3 J波长1064 nm的纳秒激光聚焦Al表面诱导的等离子体200-900 nm范围的发射谱.分析了线状谱的基本规律,根据谱线的强度,考虑到光谱仪与电荷耦合器件(charge coupled device,CCD)的探测效率,通过线性拟合给出了等离子体中AlⅠ、AlⅡ、NⅠ、OⅠ粒子的激发温度.根据谱线的半高宽计算了等离子体电子密度,进而计算了等离子中AlⅠ的电离温度.结果表明,在等离子体状态快速演化过程中,不同粒子的电离、激发与退激存在较大差异,AlⅡ、AlⅠ相对于NⅠ、OⅠ有较高的激发温度,并且等离子体中AlⅠ的电离温度高于所有粒子的激发温度.
The emission spectra in the range of 200-900 nm of the nanosecond laser-focused Al surface-induced plasma with a pulse energy of 0.3 J and wavelength of 1064 nm are detected.The basic law of the linear spectrum is analyzed,and based on the strength of the spectral line and the detection efficiency of the spectrometer and CCD,the excitation temperatures of the Al Ⅰ,Al Ⅱ,N Ⅰ and O Ⅰ particles in the plasma are given by linear fitting.The plasma electron density is calculated from the half-width of the line,and subsequently the ionization temperature of Al Ⅰ in the plasma is calculated.The results show that the ionization,excitation and dissociation differ greatly from particle to particle during the rapid evolution of the plasma state,the Al Ⅱ and Al Ⅰ have the high excitation temperature relative to the N Ⅰ,O Ⅰ,and the ionization temperature of the Al Ⅰ in the plasma is higher than the excitation temperatures of all the particles.
作者
李耀宗
张小安
梁昌慧
周贤明
曾利霞
梅策香
LI Yao-Zong;ZHANG Xiao-An;LIANG Chang-Hui;ZHOU Xian-Ming;ZENG Li-Xia;MEI Ce-Xiang(Ion Beam&Optical Physical joint Laboratory of Xianyang Normal University and Institute of Modern Physics,Chinese Academy of Sciences,Xianyang 712000,China;Institute of Modern Physics,Chinese Academy of Sciences,Lanzhou 730000,China)
出处
《原子与分子物理学报》
CAS
北大核心
2022年第6期94-101,共8页
Journal of Atomic and Molecular Physics
基金
国家自然科学基金(11505248,11605147)
陕西省自然科学基础研究计划(2019JQ-493,2021JQ-812)。
关键词
激光等离子体
线状发射谱
激发温度
电离温度
Laser-produced plasma
Linear emission spectrum
Excitation temperature
Ionization temperature