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四氟化碳分子电离解离过程中的异构化动力学
引用本文:涂宁远,陈磊,赵文超,单旭,王恩亮,陈向军.四氟化碳分子电离解离过程中的异构化动力学[J].原子与分子物理学报,2024,41(4):041001-11.
作者姓名:涂宁远  陈磊  赵文超  单旭  王恩亮  陈向军
作者单位:中国科学技术大学物理学院近代物理系
基金项目:国家自然科学基金(12204454);
摘    要:采用离子动量成像谱仪研究了能量为1.0 ke V的电子束碰撞条件下CF4分子的解离动力学.实验上,对解离离子的三维动量进行了成像测量,通过离子飞行时间关联谱识别了CF42+异构化生成F2+分子的两个通道:F2++CF2+与CF++F2++F,得到了两个通道的离子动能及动能释放分布.对于其中的三体解离通道,我们进一步采用Dalitz图与Newton图等三体动力学分析方法对解离碎片的动量关联进行了分析.该通道以两个带电离子的背对背出射为主,中性的F原子作为旁观者只得到极小的反冲动量.

关 键 词:四氟化碳  异构化  分子解离动力学
收稿时间:2022/10/29 0:00:00
修稿时间:2022/11/9 0:00:00

Isomerization Dynamics in Dissociative Ionization of Carbon Tetrafluoride
Tu Ning-Yuan,Chen Lei,Zhao Wen-Chao,Shan Xu,Wang En-Liang and Chen Xiang-Jun.Isomerization Dynamics in Dissociative Ionization of Carbon Tetrafluoride[J].Journal of Atomic and Molecular Physics,2024,41(4):041001-11.
Authors:Tu Ning-Yuan  Chen Lei  Zhao Wen-Chao  Shan Xu  Wang En-Liang and Chen Xiang-Jun
Institution:Department of Modern Physics,Department of Modern Physics University of Science and Technology of China,Department of Modern Physics,Department of Modern Physics,Department of Modern Physics and Department of Modern Physics
Abstract:The dissociation dynamics of CF4 molecules by electron collisions with impact energy of 1.0 keV was studied by using an ion momentum imaging spectrometer. In the experiment, the three-dimensional momentum vectors of the fragment ions were measured and two isomerization channels for F2+ formation from CF42+, i.e. F2+ + CF2+ and CF+ + F2+ + F, were identified by ion time-of-flight correlation map. The kinetic energy and kinetic energy release distributions of the two channels were obtained. For the three-body dissociation channel, we analyzed the momentum correlation of the dissociated fragments using the three-body dynamics analysis schemes such as the Dalitz diagram and Newton diagram. The channel is dominated by the back-to-back emission of two charged ions, and the neutral F atom acts as a spectator which only gets a very small recoil momentum.
Keywords:carbon tetrafluoride  isomerization  molecular fragmentation dynamics
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