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离子微束技术及其多学科应用
引用本文:杜广华. 离子微束技术及其多学科应用[J]. 原子核物理评论, 2012, 29(4): 371-378. DOI: 10.11804/NuclPhysRev.29.04.371
作者姓名:杜广华
作者单位:中国科学院近代物理研究所, 甘肃 兰州 730000
基金项目:中国科学院百人计划资助项目,中国科学院科研装备研制项目
摘    要:
通过微米孔准直或电磁聚焦技术可将加速器产生的MeV离子束形成微米尺寸的离子束斑(微束), 从而用来研究固体和生物样品的微米空间分辨的材料信息和辐照响应。 结合MeV离子微束的发展历史综述了微束技术和跨学科应用, 包括利用微束开展具有空间分辨的离子束分析、 单粒子效应、 微纳加工和细胞辐射响应等研究。 介绍了中国科学院近代物理研究所的高能重离子微束辐照装置, 该装置成功地将总能量为1 GeV的C离子在大气中聚焦为1 μm×2 μm的微米束斑。 Beam of MeV ions from particle accelerators can be confined by collimators or focused by electrical/magnetic quadruples into micrometer size, and this microbeam can be used to obtain spatial information or radiation effect in solids and biological samples. This paper reviews the technical developments and the multi disciplinary applications of microbeam, including ion beam analysis, single event effect in semiconductor devices, proton beam writing and cellular response to targeted particle irradiations. Finally, the high energy heavy ion microbeam facility at the Institute of Modern Physics of Chinese Academy of Sciences is introduced, which has successfully focused 1 GeV Carbon ions into a beam spot of 1 μm×2 μm in air.

关 键 词:微束   微探针   离子束分析   单粒子效应   质子束刻写   定点单细胞照射
收稿时间:1900-01-01

Techniques and Multi disciplinary Applications of Ion Microbeam
DU Guang-hua. Techniques and Multi disciplinary Applications of Ion Microbeam[J]. Nuclear Physics Review, 2012, 29(4): 371-378. DOI: 10.11804/NuclPhysRev.29.04.371
Authors:DU Guang-hua
Affiliation:Institute of Modern Physics, Chinese Academy of Sciences, Lanzhou 730000, China
Abstract:
Beam of MeV ions from particle accelerators can be confined by collimators or focused by electrical/magnetic quadruples into micrometer size, and this microbeam can be used to obtain spatial information or radiation effect in solids and biological samples. This paper reviews the technical developments and the multi disciplinary applications of microbeam, including ion beam analysis, single event effect in semiconductor devices, proton beam writing and cellular response to targeted particle irradiations. Finally, the high energy heavy ion microbeam facility at the Institute of Modern Physics of Chinese Academy of Sciences is introduced, which has successfully focused 1 GeV Carbon ions into a beam spot of 1 μm×2 μm in air.
Keywords:microbeam  microprobe  ion beam analysis  single event effect  proton beam writing  targeted cell irradiation
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