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开发一种冷靶反冲离子动量谱仪和一种弹丸电荷态分析仪装置,以研究高电荷离子与原子/分子碰撞中的电子转移过程。

Development of a cold target recoil ion momentum spectrometer and a projectile charge state analyzer setup to study electron transfer processes in highly charged ion-atom/molecule collisions.

作者信息

Siddiki Md Abul Kalam Azad, Nrishimhamurty M, Kumar Kamal, Mukherjee Jibak, Tribedi Lokesh C, Khan Arnab, Misra Deepankar

机构信息

Department of Nuclear and Atomic Physics, Tata Institute of Fundamental Research, Homi Bhabha Road, Navy Nagar, Colaba, Mumbai 400005, India.

出版信息

Rev Sci Instrum. 2022 Nov 1;93(11):113313. doi: 10.1063/5.0100395.

Abstract

We report the development and performance of a cold target recoil ion momentum spectrometer (COLTRIMS) setup at TIFR, which is built to study various atomic and molecular processes involving the interaction of slow, highly charged ions from an electron cyclotron resonance based ion accelerator. We give a detailed description of the experimental setup, as well as report some initial results on the electron-capture process in collisions of Ar ions with helium and carbon monoxide targets. Here, we present the longitudinal momentum transfer and the sub-shell resolved Q-value spectrum in the case of 2, 4, and 6 keV/u Ar beams in collision with helium. A longitudinal momentum resolution of 0.27 a.u. is achieved in the present system. We also report the state-selective scattering angle distributions for all the collision systems under investigation. We further discuss the fragmentation of the CO molecular ions for different electron capture channels for the 5 keV/u Ar beam. The combination of the COLTRIMS, along with the beam cleaner, the electrostatic deflectors, and the charge state analyzer, is shown to have certain advantages.

摘要

我们报告了在塔塔基础研究科学所(TIFR)建立的冷靶反冲离子动量谱仪(COLTRIMS)装置的研发情况及其性能。该装置旨在研究各种原子和分子过程,这些过程涉及来自基于电子回旋共振的离子加速器的慢速、高电荷离子的相互作用。我们详细描述了实验装置,并报告了关于氩离子与氦气和一氧化碳靶碰撞时电子俘获过程的一些初步结果。在此,我们展示了2 keV/u、4 keV/u和6 keV/u的氩束与氦气碰撞时的纵向动量转移和亚壳层分辨的Q值谱。在本系统中实现了0.27原子单位的纵向动量分辨率。我们还报告了所研究的所有碰撞系统的态选择性散射角分布。我们进一步讨论了5 keV/u氩束不同电子俘获通道下一氧化碳分子离子的碎片化情况。结果表明,COLTRIMS与束流清洗器、静电偏转器和电荷态分析仪相结合具有一定优势。

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