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用于离解电子附着动力学研究的高分辨率阴离子速度映射成像装置。

High-resolution anionic velocity map imaging apparatus for dissociative electron attachment dynamics study.

作者信息

Xie Jingchen, Gao Xiao-Fei, Fan Mengyuan, Li Hao, Wu Bin, Tian Shan Xi

机构信息

Department of Chemical Physics, Collaborative Innovation Center of Chemistry for Energy Materials (iChEM), University of Science and Technology of China, Hefei 230026, China.

Hefei National Research Center for Physical Sciences at Microscale, University of Science and Technology of China, Hefei 230026, China.

出版信息

Rev Sci Instrum. 2024 Oct 1;95(10). doi: 10.1063/5.0229674.

Abstract

Dissociative electron attachment (DEA) of a molecular target XY, e- + XY → XY- → X + Y-, is an important process in plasma, atmosphere, interstellar space, and ionizing radiation. DEA dynamics, i.e., the formation and fragmentation of an electron-molecule resonant complex, can be unveiled by measuring the product Y- with the velocity map imaging (VMI) technique. However, it is still challenging to achieve a high-resolution VMI measurement. Recently, we developed a high-resolution DEA apparatus that combined the VMI technique with a trochoidal electron monochromator. The energy spread (around 500 meV) of thermally emitted incident electrons can be reduced remarkably, but the monochromatized electrons become diffuse again in energy when being pulsed with an electric pulse applied on the grid electrode because the electron beam must be pulsed in the VMI measurement. Now this long-standing technical contradiction is settled by introducing a parallel resistance-capacitor circuit to the electrode of an electron gun. A delay-line detector is used for the VMI measurement, which allows the three-dimensional velocity or momentum images of multiple anionic yields to be recorded efficiently. Our high-resolution VMI apparatus works at a pulse frequency of 5 kHz and an energy spread of about 120-150 meV, and its credible performances are exhibited by the measurements of the DEA processes of CO(a3Π) and NO2.

摘要

分子靶标XY的解离电子附着(DEA)过程,即e- + XY → XY- → X + Y-,是等离子体、大气、星际空间和电离辐射中的一个重要过程。DEA动力学,即电子 - 分子共振复合物的形成和碎片化,可以通过速度成像(VMI)技术测量产物Y-来揭示。然而,实现高分辨率的VMI测量仍然具有挑战性。最近,我们开发了一种高分辨率DEA装置,它将VMI技术与摆线电子单色仪相结合。热发射的入射电子的能量展宽(约500毫电子伏特)可以显著降低,但由于在VMI测量中电子束必须被脉冲化,当在栅极电极上施加电脉冲对电子进行脉冲处理时,单色化后的电子在能量上又会再次变得弥散。现在,通过在电子枪的电极上引入一个并联电阻 - 电容电路,解决了这个长期存在的技术矛盾。使用延迟线探测器进行VMI测量,这使得能够高效地记录多个负离子产率的三维速度或动量图像。我们的高分辨率VMI装置工作在5 kHz的脉冲频率和大约120 - 150毫电子伏特的能量展宽下,并且通过对CO(a3Π)和NO2的DEA过程的测量展示了其可靠的性能。

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