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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >In-air ion beam analysis with high spatial resolution proton microbeam
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In-air ion beam analysis with high spatial resolution proton microbeam

机译:具有高空间分辨率质子微束的空气离子束分析

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One of the possible ways to maintain the micrometre spatial resolution while performing ion beam analysis in the air is to increase the energy of ions. In order to explore capabilities and limitations of this approach, we have tested a range of proton beam energies (2-6 MeV) using in-air SUM (Scanning Ion Transmission Microscopy) setup. Measurements of the spatial resolution dependence on proton energy have been compared with SRIM simulation and modelling of proton multiple scattering by different approaches. Results were used to select experimental conditions in which 1 micrometre spatial resolution could be obtained. High resolution in-air microbeam could be applied for IBIC (Ion Beam Induced Charge) tests of large detectors used in nuclear and high energy physics that otherwise cannot be tested in relatively small microbeam vacuum chambers.
机译:在空气中执行离子束分析时,保持微米级空间分辨率的一种可能方法是增加离子的能量。为了探索这种方法的功能和局限性,我们使用空中SUM(扫描离子透射显微镜)设置测试了一系列质子束能量(2-6 MeV)。已经通过不同的方法将空间分辨率对质子能量的依赖性的测量与SRIM模拟和质子多重散射的建模进行了比较。结果用于选择可获得1微米空间分辨率的实验条件。高分辨率的空中微束可用于核和高能物理中使用的大型探测器的IBIC(离子束感应电荷)测试,否则无法在相对较小的微束真空室中进行测试。

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