McManus Joseph W, Allum Felix, Featherstone Josh, Lam Chow-Shing, Brouard Mark
Chemistry Research Laboratory, Department of Chemistry, University of Oxford, Oxford OX1 3TA, U.K.
J Phys Chem A. 2024 Apr 25;128(16):3220-3229. doi: 10.1021/acs.jpca.4c01084. Epub 2024 Apr 12.
We introduce projected-momentum covariance mapping, an extension of recoil-frame covariance mapping for 2D ion imaging studies. By considering the two-dimensional projection of the ion momenta as recorded by the detector, one opens the door to a complex suite of analysis tools adapted from three-dimensional momentum imaging studies. This includes the use of different frames of reference to unravel the dynamics of fragmentation and the application of fragment momentum constraints to isolate specific fragmentation channels. The technique is demonstrated on data from a two-dimensional ion imaging study of the Coulomb explosion of the and isomers of 1,2-dichloroethene, following strong-field ionization by an intense near-infrared femtosecond laser pulse. Classical simulations are used to guide the interpretation of projected-momentum covariance maps. The results offer a detailed insight into the distinct Coulomb explosion dynamics for this pair of isomers and lay the groundwork for future time-resolved studies of photoisomerization dynamics in this molecular system.
我们引入了投影动量协方差映射,这是一种用于二维离子成像研究的反冲框架协方差映射的扩展。通过考虑探测器记录的离子动量的二维投影,人们开启了一扇通往一系列从三维动量成像研究改编而来的复杂分析工具的大门。这包括使用不同的参考系来揭示碎片化的动力学,以及应用碎片动量约束来分离特定的碎片化通道。该技术在对1,2 - 二氯乙烯的顺式和反式异构体进行强场电离后的库仑爆炸的二维离子成像研究数据上得到了验证。经典模拟被用于指导对投影动量协方差图的解释。结果为这对异构体独特的库仑爆炸动力学提供了详细的见解,并为该分子系统中光异构化动力学的未来时间分辨研究奠定了基础。