Argonne National Laboratory, Argonne, Illinois 60439, USA.
School of Chemistry, University of Nottingham, Nottingham NG7 2RD, United Kingdom.
J Chem Phys. 2017 Jul 7;147(1):013927. doi: 10.1063/1.4982218.
We have used velocity map photoelectron imaging to study circular dichroism of the photoelectron angular distributions (PADs) of nitric oxide following two-color resonance-enhanced two-photon ionization via selected rotational levels of the A Σ, v=0 state. By using a circularly polarized pump beam and a counter-propagating, circularly polarized probe beam, cylindrical symmetry is preserved in the ionization process, and the images can be reconstructed using standard algorithms. The velocity map imaging set up enables individual ion rotational states to be resolved with excellent collection efficiency, rendering the measurements considerably simpler to perform than previous measurements conducted with a conventional photoelectron spectrometer. The results demonstrate that circular dichroism is observed even when cylindrical symmetry is maintained, and serve as a reminder that dichroism is a general feature of the multiphoton ionization of atoms and molecules. The observed PADs are in good agreement with calculations based on parameters extracted from previous experimental results obtained by using a time-of-flight electron spectrometer.
我们使用速度映射光电离成像技术,通过 A Σ,v=0 态的选定转动能级,研究了一氧化氮的光电离角分布(PAD)的圆二色性。通过使用圆偏振泵浦光束和反向传播的圆偏振探测光束,可以在电离过程中保持圆柱对称性,并且可以使用标准算法重建图像。速度映射成像设置使我们能够以优异的收集效率分辨各个离子转动态,这使得测量比以前使用传统光电离光谱仪进行的测量要简单得多。结果表明,即使保持圆柱对称性,也可以观察到圆二色性,这提醒我们圆二色性是原子和分子多光子电离的普遍特征。观察到的 PAD 与基于先前使用飞行时间电子光谱仪获得的实验结果提取的参数的计算结果吻合良好。