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Absolute measurements of electron impact excitation cross-sections of atoms using cavity ringdown spectroscopy

机译:使用腔衰荡光谱法绝对测量原子的电子碰撞激发截面

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摘要

A new method of using cavity ringdown spectroscopy (CRDS) technique to measure apparent electron impact excitation cross-sections (EIECS) for different energy levels of an atom is described. The method involves measurements of absolute population densities of the energy levels in concern using the high sensitivity CRDS, leading to an analytical expression of EIECS as a function of the population densities. Determination of EIECS in this method does not require an external calibration. The proposed method is validated by determining EIECS of the metastable levels of Hg (6s6p ~3P0) and Ne (2p~53s ~3P2), and the results are in good agreement with the cross-sections reported in the literature. The population densities in both cases were extracted from the published data. This method exhibits promising potential for absolute measurements of EIECS of metastable energy levels.
机译:描述了一种使用腔衰荡光谱(CRDS)技术来测量原子的不同能级的表观电子冲击激发横截面(EIECS)的新方法。该方法涉及使用高灵敏度CRDS测量所关注能量水平的绝对人口密度,从而得出EIECS作为人口密度的函数的分析表达式。用这种方法确定EIECS不需要外部校准。通过确定Hg(6s6p〜3P0)和Ne(2p〜53s〜3P2)的亚稳水平的EIECS验证了该方法的有效性,结果与文献报道的横截面非常吻合。两种情况下的人口密度均从已发布的数据中提取。该方法具有绝对测量亚稳态能级的EIECS的潜力。

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