论文标题

用RF地毯通过离子迁移率分离原子和分子离子

Separation of atomic and molecular ions by ion mobility with an RF carpet

论文作者

Miskun, Ivan, Dickel, Timo, Andres, Samuel Ayet San, Bergmann, Julian, Constantin, Paul, Ebert, Jens, Geissel, Hans, Greiner, Florian, Haettner, Emma, Hornung, Christine, Lippert, Wayne, Mardor, Israel, Moore, Iain, Plaß, Wolfgang R., Purushothaman, Sivaji, Rink, Ann-Kathrin, Reiter, Moritz P., Scheidenberger, Christoph, Weick, Helmut

论文摘要

充满气体的停止细胞用于加速器实验室,用于高能放射性离子束的热化。许多停止细胞的常见挑战是提取离子的高分子背景以及由于空间充电效应引起的提取效率的局限性。在GSI的FRS离子捕捉器上,已经开发出一种用于从停止细胞中取出之前去除离子化分子的新技术。该技术利用RF地毯通过离子迁移率差异将原子离子与分子污染物离子分离。提出了成功实现和测试的结果,并提出了600〜MEV/U $^{124} $ XE主梁的结果。已经证明了通过三个数量级抑制分子污染物。本质上,已经达到了25 U/e的质量到电荷范围内的背景事件少于$ 1〜%$的无背景测量条件。该技术还可以用于减少提取喷嘴和下游光束线上的空间充电效应,从而确保在无空间充电条件下的高效率离子传输效率和高度准确的测量。

Gas-filled stopping cells are used at accelerator laboratories for the thermalization of high-energy radioactive ion beams. Common challenges of many stopping cells are a high molecular background of extracted ions and limitations of extraction efficiency due to space-charge effects. At the FRS Ion Catcher at GSI, a new technique for removal of ionized molecules prior to their extraction out of the stopping cell has been developed. This technique utilizes the RF carpet for the separation of atomic ions from molecular contaminant ions through their difference in ion mobility. Results from the successful implementation and test during an experiment with a 600~MeV/u $^{124}$Xe primary beam are presented. Suppression of molecular contaminants by three orders of magnitude has been demonstrated. Essentially background-free measurement conditions with less than $1~\%$ of background events within a mass-to-charge range of 25 u/e have been achieved. The technique can also be used to reduce the space-charge effects at the extraction nozzle and in the downstream beamline, thus ensuring high efficiency of ion transport and highly-accurate measurements under space-charge-free conditions.

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