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Long-lived monolithic micro-optics for multispectral GRIN applications

机译:用于多光谱栅格应用的长期单片微光学

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The potential for realizing robust, monolithic, near-surface refractive micro-optic elements with long-lived stability is demonstrated in visible and infrared transmitting glasses capable of use in dual band applications. Employing an enhanced understanding of glass chemistry and geometric control of mobile ion migration made possible with electrode patterning, flat, permanent, thermally-poled micro-optic structures have been produced and characterized. Sub-surface (t~5–10?μm) compositional and structural modification during the poling process results in formation of spatially-varying refractive index profiles, exhibiting induced Δn changes up to 5?×?10?2 which remain stable for 15 months. The universality of this approach applied to monolithic vis-near infrared [NIR] oxide and NIR-midwave infrared [MIR] chalcogenide glass materials is demonstrated for the first time. Element size, shape and gradient profile variation possible through pattern design and fabrication is shown to enable a variety of design options not possible using other GRIN process methodologies.
机译:在能够用于双频带应用的可见和红外透射玻璃中,对具有长寿稳定性的稳健,单片近表面折射微光学元件的可能性。采用电极图案化的电极图案化的玻璃化学和移动离子迁移的几何控制,已经生产和表征了具有电极图案化的移动离子迁移的几何控制。在抛光过程中的亚表面(T〜5-10≤μm)的组成和结构改性导致在空间 - 不同的折射率分布的形成,表现出诱导的Δn变化高达5?×10?2,其保持稳定> 15几个月。第一次证明了应用于单片近近红外[NIR]氧化物和NIR-MIDWAVE [MIR]硫属化物玻璃材料的这种方法的普遍性。通过图案设计和制造的元素尺寸,形状和梯度轮廓变化可以示出使用其他胶质工艺方法可以实现不可能的各种设计选项。

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