Three-dimensional (3D) velocity map imaging: from technique to application

Three-dimensional (3D) velocity map imaging: from technique to application
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三维 (3D) 速度图成像:从技术到应用

DOI:
10.1088/1361-6455/ac4b42
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发表时间:
2022
期刊:
Molecular and Optical Physics
影响因子:
--
通讯作者:
Li, Wen
Li, Wen
中科院分区:
--
文献类型:
--
作者:
Basnayake, Gihan;Ranathunga, Yasashri;Lee, Suk Kyoung;Li, Wen

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速度图成像(VMI)技术首先由Eppink和帕克在1997年引入,作为对休斯顿和钱德勒在1987年提出的原始离子成像方法的改进。在过去的二十年里,该方法得到了极大的普及,并已成为测量离子和电子的高分辨率平移能量和角分布的标准工具。VMI已经逐渐从2D动量测量发展到具有各种实现和配置的3D测量。最新的进展带来了前所未有的3D性能的技术方面的分辨率(空间和时间),多击能力以及采集速度,同时保持了许多有吸引力的属性提供了传统的VMI,如简单,成本效益,视觉吸引力和通用性。在本教程中,我们将讨论许多技术方面的最新进展及其在探测相关化学动力学的应用。
The velocity map imaging (VMI) technique was first introduced by Eppink and Parker in 1997, as an improvement to the original ion imaging method by Houston and Chandler in 1987. The method has gained huge popularity over the past two decades and has become a standard tool for measuring high-resolution translational energy and angular distributions of ions and electrons. VMI has evolved gradually from 2D momentum measurements to 3D measurements with various implementations and configurations. The most recent advancement has brought unprecedented 3D performance to the technique in terms of resolutions (both spatial and temporal), multi-hit capability as well as acquisition speed while maintaining many attractive attributes afforded by conventional VMI such as being simple, cost-effective, visually appealing and versatile. In this tutorial we will discuss many technical aspects of the recent advancement and its application in probing correlated chemical dynamics.
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