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Spatial distribution of irradiation effects on silica glass induced by 15-MeV oxygen ion microbeam

机译:15-MeV氧离子微束辐照对石英玻璃辐照效应的空间分布

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摘要

High-purity silica glass was irradiated by a focused 15-MeV O~(4+) microbeam with diameter of 1 μm up to a fluence of 1.0 x 10~(14) ions/cm~2. Spatial distribution of irradiation effects by the O~(4+) microbeam on silica glass was investigated by optical microscopy, micro-photoluminescence (PL)/Raman spectroscopy and atomic force microscopy (AFM). Distribution of refractive index change and defect formation was visualized by optical microscopy and PL mapping, indicating the structural changes of silica glass along the ion track up to the depth of 10 μm. In addition, we observed deformed side surface with a groove by AFM along the track suggesting the internal compaction in silica glass. This is accompanied by increased threefold rings of SiO_2 network detected by Raman scattering. We also discuss technological implications of these results on the applications of microbeam irradiation effects to the fabrication of microoptical elements.
机译:用直径为1μm的聚焦15-MeV O〜(4+)微束辐照高纯度石英玻璃,其通量为1.0 x 10〜(14)离子/ cm〜2。通过光学显微镜,显微光致发光(PL)/拉曼光谱和原子力显微镜(AFM)研究了O〜(4+)微束对石英玻璃辐照效应的空间分布。折射率变化和缺陷形成的分布通过光学显微镜和PL映射可视化,表明二氧化硅玻璃沿离子径迹直至10μm的结构变化。此外,我们观察到沿轨道在AFM的作用下带有凹槽的侧面变形,这表明石英玻璃内部存在压实现象。这伴随着通过拉曼散射检测到的SiO_2网络三重环的增加。我们还将讨论这些结果对微束辐照效应在微光学元件制造中的应用的技术含义。

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