Max-Planck-Institut für Kernphysik, 69117 Heidelberg, Germany.
Institut für Physik, Ernst-Moritz-Arndt Universität, 17487 Greifswald, Germany.
Phys Rev Lett. 2016 Mar 18;116(11):113002. doi: 10.1103/PhysRevLett.116.113002. Epub 2016 Mar 17.
We have studied the photodissociation of CH^{+} in the Cryogenic Storage Ring at ambient temperatures below 10 K. Owing to the extremely high vacuum of the cryogenic environment, we were able to store CH^{+} beams with a kinetic energy of ∼60 keV for several minutes. Using a pulsed laser, we observed Feshbach-type near-threshold photodissociation resonances for the rotational levels J=0-2 of CH^{+}, exclusively. In comparison to updated, state-of-the-art calculations, we find excellent agreement in the relative intensities of the resonances for a given J, and we can extract time-dependent level populations. Thus, we can monitor the spontaneous relaxation of CH^{+} to its lowest rotational states and demonstrate the preparation of an internally cold beam of molecular ions.
我们在环境温度低于 10 K 的低温存储环中研究了 CH^{+}的光解。由于低温环境的极高真空度,我们能够将 CH^{+}束存储在大约 60keV 的动能下几分钟。使用脉冲激光器,我们仅观察到了 Feshbach 型近阈值光解共振对于 CH^{+}的旋转能级 J=0-2。与最新的、最先进的计算相比,我们发现对于给定的 J,共振的相对强度非常吻合,并且我们可以提取随时间变化的能级布居数。因此,我们可以监测 CH^{+}到其最低旋转态的自发弛豫,并证明分子离子的内部冷束的制备。