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Generation of Metallic Plasmon Nanostructures In a Thin Transparent Photosensitive Copper Oxide Film By Femtosecond Thermochemical Decomposition

机译:通过飞秒热化学分解在薄透明光敏铜氧化物膜中产生金属等离子体纳米结构

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Irradiation of optically transparent copper (I) oxide film covering a glass substrate with a tightly focused femtosecond laser pulses in the pre-ablation regime leads to film reduction to a metallic colloidal state via a single-photon absorption and its subsequent thermochemical decomposition. This effect was demonstrated by the corresponding measurement of the extinction spectrum in visible spectral range. The laser-induced formation of metallic copper nanoparticles in the focal region inside the bulk oxide film allows direct recording of individual thin-film plasmon nanostructures and optical-range metasurfaces.
机译:光学透明铜(I)覆盖具有紧密聚焦的小型激光激光脉冲的光学透明铜(I)氧化膜的辐射导致通过单光子吸收和其随后的热化学分解来膜降低到金属胶体状态。 通过在可见光谱范围内的消光谱的相应测量来证明该效果。 在氧化物膜内的焦点区域中的激光诱导的金属铜纳米颗粒形成允许直接记录单个薄膜等离子体纳米结构和光学范围的元件。

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