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首页> 外文期刊>Applied optics >INFRARED QUARTER-WAVE REFLECTION RETARDERS DESIGNED WITH HIGH-SPATIAL-FREQUENCY DIELECTRIC SURFACE-RELIEF GRATINGS ON A GOLD SUBSTRATE AT OBLIQUE INCIDENCE
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INFRARED QUARTER-WAVE REFLECTION RETARDERS DESIGNED WITH HIGH-SPATIAL-FREQUENCY DIELECTRIC SURFACE-RELIEF GRATINGS ON A GOLD SUBSTRATE AT OBLIQUE INCIDENCE

机译:在斜入射下在金基底上用高空间频率介电光栅设计的红外四分之一波长反射延迟器

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摘要

One- and two-dimensional high-spatial-frequency dielectric surface-relief gratings on a Au substrate are used to design a high-reflectance quarter-wave retarder at 70 degrees angle of incidence and 10.6-mu m light wavelength. The equivalent homogeneous anisotropic layer model is used. It is shown that equal and high reflectances (>98.5%) for the p and the s polarizations and quarter-wave retardation can be achieved with two-dimensional ZnS surface-relief gratings. Sensitivities to changes of incidence angle, light wavelength, grating filling factor, and grating layer thickness are considered. (C) 1996 Optical Society of America [References: 21]
机译:使用Au衬底上的一维和二维高空间频率介电表面光栅来设计入射角为70度,光波长为10.6μm的高反射四分之一波长延迟器。使用等效均质各向异性层模型。结果表明,使用二维ZnS表面浮雕光栅可以实现相同且较高的p和s反射率(> 98.5%)和四分之一波长延迟。考虑对入射角,光波长,光栅填充因子和光栅层厚度变化的敏感性。 (C)1996年美国眼镜学会[参考文献:21]

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