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首页> 外文期刊>The Journal of Chemical Physics >Probing dissociative electron attachment through heavy-Rydberg ion-pair production in Rydberg atom collisions
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Probing dissociative electron attachment through heavy-Rydberg ion-pair production in Rydberg atom collisions

机译:通过Rydberg原子碰撞中的重Rydberg离子对产生来探索解离电子附着

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摘要

Electron transfer in collisions between low-n, n = 12, Rydberg atoms and targets that attach low-energy electrons can lead to the formation of heavy-Rydberg ion-pair states comprising a weakly-bound positive-negative ion pair that orbit each other at large separations. Measurements of the velocity and angular distribution of ion-pair states produced in collisions with 1,1,1-C2Cl3F3, CBrCl3, BrCN, and Fe(CO)(5) are used to show that electron transfer reactions furnish a new technique with which to examine the lifetime and decay energetics of the excited intermediates formed during dissociative electron capture. The results are analyzed with the aid of Monte Carlo simulations based on the free electron model of Rydberg atom collisions. The data further highlight the capabilities of Rydberg atoms as a microscale laboratory in which to probe the dynamics of electron attachment reactions. Published by AIP Publishing.
机译:低n,n = 12的Rydberg原子与附着低能电子的靶之间的碰撞中的电子转移可能导致形成重Rydberg离子对态,该态包括一对相互绕动的弱键合正负离子对间隔较大。与1,1,1-C2Cl3F3,CBrCl3,BrCN和Fe(CO)(5)碰撞产生的离子对态的速度和角分布的测量结果表明,电子转移反应提供了一种新技术,检查在解离电子捕获过程中形成的受激中间体的寿命和衰变能。借助基于里德伯格原子碰撞的自由电子模型的蒙特卡洛模拟对结果进行分析。数据进一步强调了里德伯格原子作为微型实验室的能力,可以在其中探测电子附着反应的动力学。由AIP Publishing发布。

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