首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Single-stage quintuplet for upgrading triplet based lens system: Simulation for Atomki microprobe
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Single-stage quintuplet for upgrading triplet based lens system: Simulation for Atomki microprobe

机译:用于升级基于三重透镜的透镜系统的单级五联体:Atomki微探针的仿真

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摘要

Among different configurations of lens systems for nuclear microprobes, the most common one is a triplet of magnetic quadrupole lenses. Nowadays, microanalysis and material modification will undoubtedly benefit from an improvement in spatial resolution. This work presents the results of simulations for improvement of the Oxford Triplet lens system at the Atomki microprobe with consideration of its system parameters and measured beam brightness distribution. For this purpose, an additional single-unit doublet of lenses with two power supplies was introduced. Using earlier developed methods, such a quintuplet system was optimized in order to determine the parameters which provided the highest resolution for different current operational modes with the same microprobe geometry. The tolerances for lens positioning accuracy were also calculated. The obtained quintuplet parameters indicate a resolution improvement for the Atomki microprobe compared to the Oxford Triplet system and these results validate further experimental testing of the proposed quintuplet.
机译:在用于核微探针的透镜系统的不同配置中,最常见的是三重磁性四极透镜。如今,微分析和材料修饰无疑将受益于空间分辨率的提高。这项工作提出了在Atomki微探针上改进牛津三重透镜系统的仿真结果,并考虑了其系统参数和测得的光束亮度分布。为此,引入了带有两个电源的附加单片双合透镜。使用较早开发的方法,对这种五联体系统进行了优化,以便确定可为具有相同微探针几何形状的当前不同操作模式提供最高分辨率的参数。还计算了镜头定位精度的公差。获得的五联体参数表明,与牛津三联体系统相比,Atomki微型探针的分辨率有所提高,这些结果验证了所提出的五联体的进一步实验测试。

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