反氢
物理
里德伯公式
反物质
激光器
原子物理学
波长
物质波
混合(物理)
连续波
紫外线
辐射
光学
量子
离子
电离
核物理学
量子力学
轻子
电子
作者
Daniel Kolbe,Martin Scheid,J. Walz
标识
DOI:10.1103/physrevlett.109.063901
摘要
Continuous-wave coherent radiation in the vacuum ultraviolet (VUV)wavelength region at 121 nm will be essential for future laser-cooling of trapped antihydrogen [1]. Cold antihydrogen will enable both tests of the fundamental symmetry between matter and antimatter at unprecedented experimental precision [2] and also experiments in antimatter gravity [3]. Another fascinating application of narrowband continuous laser radiation in the VUV is quantum information processing using single trapped ions in Rydberg-states [4, 5]. Here we describe highly efficient continuous four-wave mixing in the VUV by using three different fundamental wavelengths with a sophisticated choice of detunings to resonances of the nonlinear medium. Up to 6 microwatts of vacuum ultraviolet radiation at 121 nm can be generated which corresponds to an increase of three orders of magnitude in efficiency.
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