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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Research and development of ion surfing RF carpets for the cyclotron gas stopper at the NSCL
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Research and development of ion surfing RF carpets for the cyclotron gas stopper at the NSCL

机译:NSCL回旋加速器塞子用离子冲浪RF地毯的研发

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摘要

A model device to transport thermal ions in the cyclotron gas stopper, a next-generation beam thermal-ization device under construction at the National Superconducting Cyclotron Laboratory, is presented. Radioactive ions produced by projectile fragmentation will come to rest at distances as large as 45 cm from the extraction orifice of the cyclotron gas stopper. The thermalized ions will be transported to the exit by RF carpets employing the recently developed "ion surfing" method. A quarter-circle prototype RF carpet was tested with potassium ions, and ion transport velocities as high as 60 m/s were observed over distances greater than 10 cm at a helium buffer gas pressure of 80 mbar. The transport of rubidium ions from an RF carpet to an electrode below was also demonstrated. The results of this study formed the basis of the design of the RF carpets for use in the cyclotron gas stopper.
机译:提出了一种在回旋加速器气体塞中传输热离子的模型装置,这是国家超导回旋加速器实验室正在建造的下一代射束热化装置。弹丸碎裂产生的放射性离子将停留在距回旋加速器塞子的提取孔最大45厘米的距离处。使用最近开发的“离子冲浪”方法,热离子将通过RF地毯被运输到出口。用钾离子测试了四分之一圈的原型RF地毯,在80 mbar的氦缓冲气体压力下,在大于10 cm的距离上观察到高达60 m / s的离子传输速度。还展示了of离子从RF地毯到下方电极的传输。这项研究的结果构成了用于回旋加速器气体塞的RF地毯设计的基础。

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