Institut für Experimentalphysik, Heinrich-Heine-Universität Düsseldorf, Universitätsstr. 1, 40225 Düsseldorf, Germany.
Phys Rev Lett. 2012 May 4;108(18):183003. doi: 10.1103/PhysRevLett.108.183003. Epub 2012 May 3.
Advanced techniques for manipulation of internal states, standard in atomic physics, are demonstrated for a charged molecular species for the first time. We address individual hyperfine states of rovibrational levels of a diatomic ion by optical excitation of individual hyperfine transitions, and achieve controlled transfer of population into a selected hyperfine state. We use molecular hydrogen ions (HD+) as a model system and employ a novel frequency-comb-based, continuous-wave 5 μm laser spectrometer. The achieved spectral resolution is the highest obtained so far in the optical domain on a molecular ion species. As a consequence, we are also able to perform the most precise test yet of the ab initio theory of a molecule.
首次在带电分子物种中展示了原子物理中常用的内部状态操控的先进技术。我们通过光学激发单个超精细跃迁,实现了对双原子离子的转动能级个别超精细状态的寻址,并将布居数有控制地转移到选定的超精细状态。我们以氢离子(HD+)为模型系统,并采用基于新型频梳的连续波 5μm 激光光谱仪。所实现的光谱分辨率是目前在光学领域对分子离子种类获得的最高分辨率。因此,我们还能够对分子的从头理论进行迄今为止最精确的测试。