氢原子中电磁诱导透明的103nm非线性辐射的产生

R. Thompson, B. Stoicheff, G. Zhang, K. Hakuta
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引用次数: 6

摘要

在低密度极限下,对原子氢中产生102.6 nm相干Lyman- β辐射的四波混频进行了实验和理论研究。我们证明,在这个双共振系统中,应用强激光辐射来强耦合2s和3p能级,使1s跃迁的3p透明,导致产生的Lyman- β辐射的吸收减少,并提高了转换效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nonlinear generation of 103 nm radiation with electromagnetically-induced transparency in atomic hydrogen
Four-wave mixing in atomic hydrogen with the generation of coherent Lyman- beta radiation at 102.6 nm was investigated experimentally and theoretically in the low density limit. We demonstrate that in this doubly-resonant system, the application of intense laser radiation to strongly couple the 2s and 3p levels causes transparency in the 3p from 1s transition, leading to reduced absorption of the generated Lyman- beta radiation, and to increased conversion efficiency.
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