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Cs-N_(2)系统中精细结构能量交换的作用 被引量:1

Role of fine structure energy exchange in Cs-N_(2) system
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摘要 为了讨论缓冲气体对碱原子精细结构能级间的能量交换加速作用,利用激光感应荧光光谱对Cs(Rb)-N_(2)系统中的精细结构碰撞能量转移过程进行了实验研究,获得了不同条件下碱原子D_(1)线和D_(2)线的荧光变化数据。结果表明,在Cs-N_(2)系统中,N_(2)分子更多参与精细结构能量交换的加速过程;在340K时,系统具有高的荧光转换效率;在Rb-N_(2)系统中,N_(2)分子主要参与猝灭过程,对精细结构碰撞的增益作用不明显。这一结果可为半导体抽运碱金属激光器的高效运行提供参考数据。 In order to discuss the acceleration of energy exchange between fine structure energy levels of alkali atoms by buffer gas,the energy transfer process of fine structure collision in Cs(Rb)-N_(2) system were investigated experimentally by laser induced fluorescence spectroscopy.The fluorescence data of D_(1) and D_(2) lines of alkali atoms were obtained under different conditions.The experimental results show that N_(2) molecules are more involved in the acceleration of fine structure energy exchange in the Cs-N_(2) system,and the system has a high fluorescence conversion efficiency at 340K.In the Rb-N_(2) system,N_(2) molecules mainly participate in the quenching process,and the gain effect on the fine structure collision is not obvious.The results can provide reference data for the efficient operation of the semiconductor pumped alkali laser.
作者 刘静 聂琨璞 杨蛟 王浟 安国斐 戴康 LIU Jing;NIE Kunpu;YANG Jiao;WANG You;AN Guofei;DAI Kang(School of Physical Science and Technology,Xinjiang University,Urumqi 830046,China;Southwest Institute of Technical Physics,Chengdu 610041,China)
出处 《激光技术》 CAS CSCD 北大核心 2022年第5期702-707,共6页 Laser Technology
基金 中国兵器工业集团有限公司激光器件技术重点实验室开放课题资助项目(KLLDT202005) 国家自然科学基金资助项目(11964037)。
关键词 激光器 精细结构能量转移 激光感应荧光光谱 Cs-N_(2)系统 缓冲气体 猝灭 lasers fine structure energy transfer laser induced fluorescence spectroscopy Cs-N_(2)system buffer gas quenching
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