Department of Physics and Astronomy, University College London, Gower Street, London WC1E 6BT, United Kingdom.
Department of Physics, University of Ottawa, 150 Louis Pasteur, Ottawa, Ontario K1N 6N5, Canada.
J Chem Phys. 2017 Jul 7;147(1):013911. doi: 10.1063/1.4978923.
The Pixel-Imaging Mass Spectrometry (PImMS) camera allows for 3D charged particle imaging measurements, in which the particle time-of-flight is recorded along with (x, y) position. Coupling the PImMS camera to an ultrafast pump-probe velocity-map imaging spectroscopy apparatus therefore provides a route to time-resolved multi-mass ion imaging, with both high count rates and large dynamic range, thus allowing for rapid measurements of complex photofragmentation dynamics. Furthermore, the use of vacuum ultraviolet wavelengths for the probe pulse allows for an enhanced observation window for the study of excited state molecular dynamics in small polyatomic molecules having relatively high ionization potentials. Herein, preliminary time-resolved multi-mass imaging results from CFI photolysis are presented. The experiments utilized femtosecond VUV and UV (160.8 nm and 267 nm) pump and probe laser pulses in order to demonstrate and explore this new time-resolved experimental ion imaging configuration. The data indicate the depth and power of this measurement modality, with a range of photofragments readily observed, and many indications of complex underlying wavepacket dynamics on the excited state(s) prepared.
像素成像质谱仪 (PImMS) 相机可实现 3D 带电粒子成像测量,其中记录了粒子飞行时间以及 (x, y) 位置。将 PImMS 相机与超快泵浦探测速度映射成像光谱仪相结合,因此提供了一种用于时间分辨多质量离子成像的途径,具有高计数率和大动态范围,从而能够快速测量复杂的光解动力学。此外,探针脉冲使用真空紫外波长允许对具有相对较高电离势的小分子的激发态分子动力学进行增强的观察窗口。本文介绍了 CFI 光解的初步时间分辨多质量成像结果。实验中使用飞秒 VUV 和 UV(160.8nm 和 267nm)泵浦和探针激光脉冲,以展示和探索这种新的时间分辨实验离子成像配置。数据表明了这种测量模式的深度和能力,很容易观察到一系列光碎片,并对激发态上复杂的波包动力学有很多迹象。