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Flexible diffractive gratings: theoretical investigation of the dependency of diffraction efficiency on mechanical deformation

机译:柔性衍射光栅:衍射效率对机械变形的依赖性的理论研究

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摘要

The mechanical deformations of variable elastomeric diffractive optical elements are calculated by finite element methods. Starting from optimized blazed gratings, the derived profile variations serve as an input for rigorous-coupled-wave analysis to calculate the diffraction efficiency of a spectral band from 200 to 1200 nm. Applied planar strain of up to 80% has little effect on the maximum diffraction efficiency for large grating-period-to-wavelength ratios, g/λ, with only a shift toward shorter wavelengths. With a decreasing g/λ, the maximum efficiency also decreases when stretching the grating structure. Further influences of profile design like the angle of the antiblaze facet and the use of higher-order blaze profiles were investigated. Finally, we simulate the change in the diffraction efficiency at a single wavelength of a flexible blazed grating in direct contact with a rigid glass plate. In this case, the soft matter grating is compressed and deformed to reduce the diffracting properties.
机译:可变弹性体衍射光学元件的机械变形是通过有限元方法计算的。从优化的闪耀光栅开始,导出的轮廓变化将用作严格耦合波分析的输入,以计算200至1200 nm光谱带的衍射效率。对于较大的光栅周期与波长之比g /λ,施加的高达80%的平面应变对最大衍射效率几乎没有影响,而仅向较短的波长偏移。随着g /λ的减小,当拉伸光栅结构时,最大效率也会降低。研究了轮廓设计的其他影响,例如防火焰刻面的角度和使用高阶火焰轮廓。最后,我们模拟了与刚性玻璃板直接接触的柔性闪耀光栅在单个波长处衍射效率的变化。在这种情况下,软物质光栅被压缩并变形以减小衍射特性。

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