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Moldable AR microstructures for improved laser transmission and damage resistance in CIRCM fiber optic beam delivery systems

机译:用于改进激光透射和损伤电阻的可模塑结构

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Anti-reflecting (AR) surface relief microstructures (ARMs) are being developed as a replacement for thin-film AR coatings in laser-based systems to improve light transmission, power handling, operational bandwidth, and system reliability. Because ARMs textures have the potential to be replicated using simple embossing methods, the performance advantage and robustness of ARMs can be extended to moldable mid-infrared transmitting materials such as chalcogenide optical fibers. In this work, the optical performance of mid-infrared transparencies incorporating ARMs textures replicated from a master template has been modeled, and multiple master stamping tools have been fabricated in materials such as diamond, silicon carbide, nickel, silicon, and sapphire. Images from ARMs texture embossing trials using arsenic sulfide and arsenic selenide (AMTIR2) glasses, and fluoride glasses such as ZBLAN and indium fluoride provided by IRPhotonics, show excellent pattern transfer and fidelity. Transmission measurements of ARMs textures stamped into arsenic sulfide and arsenic selenide windows show broadband infrared performance equivalent to ARMs textured windows processed by direct patterning and etch methods. A system for molding ARMs textures directly into the end facets of multi-mode mid-infrared transmitting fibers is yielding promising initial results
机译:抗反射(AR)表面释放微结构(臂)被开发为基于激光的系统中的薄膜AR涂层的替代品,以改善光传输,功率处理,操作带宽和系统可靠性。由于武器纹理具有使用简单压花方法可以复制的电位,因此可以将臂的性能优势和稳健性延伸到可模碳化物光纤等模碳的中红外传输材料。在这项工作中,包含从主模板复制的武器纹理的中红外透明胶片的光学性能已经建模,并且在菱形,碳化碳,镍,硅和蓝宝石等材料中制造了多个主冲压工具。来自武器纹理压花试验使用砷硫化物和砷硒(Amtir2)玻璃和荧光玻璃如Zblan和Irphotonics提供的氟化镍,表现出优异的图案转移和保真度。将武器纹理的传输测量压印成砷硫化物和砷硒网Windows,展示了通过直接图案化和蚀刻方法处理的宽带红外性能等同于武器纹理窗口。用于将臂纹理直接成型到多模式中红外发射光纤的端面的系统产生了有希望的初始结果

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