超高抽运功率条件下高能Xe原子的能量池过程

Junzhi Chu, Shan He, Dong Liu, Xueyang Li, Jingwei Guo, Jinbo Liu, Shu Hu, Haiyang Li, Pengyuan Wang, Ying Chen, F. Sang, Yuqi Jin
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引用次数: 0

摘要

研究了6p[1/2]0、6p[3/2]2和6p[5/2]2在超高泵浦功率下的动力学行为。这些过程通过时间分辨荧光和ASE光谱进行检测。提出了聚焦条件下的能量池理论。有三种类型的能量汇集过程。第一种是能量池电离。激光制备态为6p[1/2]0、6p[3/2]2、6p[5/2]2时,均可观察到明显的电离现象。第二种是能量池,能量差较大。当制备态为6p[1/2]0时,两个6p[1/2]0原子之间的能量池碰撞可产生1个5d[3/2]1原子和1个6s '[1/2]0原子。第三种是能量池,能量差较小。五个次级6p态的产生方式是能量池化而不是碰撞松弛。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy-pooling processes of high-lying Xe atoms under the condition of ultrahigh pumped power
The kinetic behaviors of 6p[1/2]0, 6p[3/2]2 ,and 6p[5/2]2 were examined under the ultrahigh pumped power. These processes were detected by the way of time-resolved fluorescence and ASE spectra. A theory of energy-pooling is presented under the focused condition. There are three types of energy-pooling processes. The first type is energy-pooling ionization. The obvious ionization can be observed whenever the laser prepared state is the 6p[1/2]0, 6p[3/2]2, or 6p[5/2]2 state. The second type is energy-pooling with big energy difference. The energy-pooling collision between the two 6p[1/2]0 atoms can produce one 5d[3/2]1 atom and one 6s’[1/2]0 atom when the prepared state is 6p[1/2]0. The third type is energy-pooling with small energy difference. The way of generation of five secondary 6p states is energy-pooling instead of collision relaxation.
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