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Complex-shaped three-dimensional microstructures and photonic crystals generated in a polysiloxane polymer by two-photon micro stereolithography

机译:通过双光子微立体光刻在聚硅氧烷聚合物中生成复杂形状的三维微结构和光子晶体

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摘要

Two-photon photopolymerization of inorganic-organic hybrid materials permits the generation of complex-shaped three-dimensional microstructures at submicrometer resolution of structural elements. Due to their favorable optical, chemical and thermal properties these materials are particularly useful for photonic microdevice fabrication. Focussing ultrashort pulsed visible light into a modified commercially available polysiloxane polymer a Sydney Opera House design and a series of woodpile-type photonic crystals were fabricated. Fourier transform infrared spectroscopy revealed photonic stop gaps in the stacking direction at wavelengths varying from 6 to 4 μm upon reduction of the woodpile rod size. The structures allowed for the observation of higher-order stop gaps.
机译:无机-有机杂化材料的双光子光聚合可以在亚微米分辨率的结构元素下生成复杂形状的三维微观结构。由于它们的良好的光学,化学和热学性质,这些材料特别适用于光子微器件的制造。将超短脉冲可见光聚焦到改性的市售聚硅氧烷聚合物中,这是悉尼歌剧院的设计,并制造了一系列木桩型光子晶体。傅里叶变换红外光谱法显示,随着堆垛杆尺寸的减小,波长在6到4μm之间的光子在堆叠方向上出现了停止间隙。该结构允许观察高阶止动间隙。

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