DESIREE中的diion诊断:从溅射离子源高灵敏度检测$\text{C}_{n}^{2-}$。

K. Chartkunchand, M. Stockett, E. Anderson, G. Eklund, M. K. Kristiansson, M. Kamińska, N. Ruette, M. Blom, M. Björkhage, A. Källberg, P. Löfgren, P. Reinhed, S. Rosén, A. Simonsson, H. Zettergren, H. Schmidt, H. Cederquist
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引用次数: 1

摘要

采用固体石墨靶溅射离子源制备了以碳簇为中心的硅离子,$\text{C}_{n}^{2-}$,其中$n=7-24$。来自源的单电荷和双电荷阴离子一起加速到每原子单位电荷的动能为10 keV,并注入斯德哥尔摩大学双静电离子环实验装置的一个低温(13 K)离子束存储环中。注入环内热的$\text{C}_{n}^{2-}$阴离子自发衰变产生动能为20 keV的$\text{C}}^{-}$阴离子,用微通道板探测器对其进行计数。在离子注入线上扫描$90^{\circ}$分析磁体的磁场所产生的质谱反映了内部热$\text{C}_{7}^{2-}-\text{C}_{24}^{2-}$的产生,其寿命在几十微秒到几毫秒之间。虽然该方法的灵敏度很高,但没有发现$\text{C}_{6}^{2-}$的确凿证据,而有一个清晰的$\text{C}_{7}^{2-}$信号,其同位素分布符合预期。推导了$\text{C}_{6}^{2-}$信号的上限,该上限比$\text{C}_{7}^{2-}$信号的上限小两个数量级。此外,还检测到$\text{C}_{n}\text{O}^{2-}$和$\text{CsCu}^{2-}$。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dianion diagnostics in DESIREE: High-sensitivity detection of $\text{C}_{n}^{2-}$ from a sputter ion source.
A sputter ion source with a solid graphite target has been used to produce dianions with a focus on carbon cluster dianions, $\text{C}_{n}^{2-}$, with $n=7-24$. Singly and doubly charged anions from the source were accelerated together to kinetic energies of 10 keV per atomic unit of charge and injected into one of the cryogenic (13 K) ion-beam storage rings of the Double ElectroStatic Ion Ring Experiment facility at Stockholm University. Spontaneous decay of internally hot $\text{C}_{n}^{2-}$ dianions injected into the ring yielded $\text{C}^{-}$ anions with kinetic energies of 20 keV, which were counted with a microchannel plate detector. Mass spectra produced by scanning the magnetic field of a $90^{\circ}$ analyzing magnet on the ion injection line reflect the production of internally hot $\text{C}_{7}^{2-}-\text{C}_{24}^{2-}$ dianions with lifetimes in the range of tens of microseconds to milliseconds. In spite of the high sensitivity of this method, no conclusive evidence of $\text{C}_{6}^{2-}$ was found while there was a clear $\text{C}_{7}^{2-}$ signal with the expect isotopic distribution. An upper limit is deduced for a $\text{C}_{6}^{2-}$ signal that is two orders-of-magnitue smaller than that for $\text{C}_{7}^{2-}$. In addition, $\text{C}_{n}\text{O}^{2-}$ and $\text{CsCu}^{2-}$ dianions were detected.
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