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Unified design of sinusoidal-groove fused-silica grating

机译:正弦槽熔融石英光栅的统一设计

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摘要

A general design rule of deep-etched subwavelength sinusoidal-groove fused-silica grating as a highly efficient polarization-independent or polarization-selective device is studied based on the simplified modal method, which shows that the device structure depends little on the incident wavelength, but mainly on the ratio of groove depth to incident wavelength and the ratio of wavelength to grating period. These two ratios could be used as the design guidelines for wavelength-independent structure from deep ultraviolet to far infrared. The optimized grating profile with a different function as a polarizing beam splitter, a polarization-independent two-port beam splitter, or a polarization-independent grating with high efficiency of -1st order is obtained at a wavelength of 1064 nm, and verified by using the rigorous coupled-wave analysis. The performance of the sinusoidal grating is better than a conventional rectangular one, which could be useful for practical applications.
机译:基于简化模态方法,研究了深蚀刻亚波长正弦槽熔融石英光栅作为高效偏振无关或偏振选择器件的一般设计规律,表明该器件的结构对入射波长的依赖性很小,但主要取决于凹槽深度与入射波长的比以及波长与光栅周期的比。这两个比率可用作从深紫外到远红外的与波长无关的结构的设计准则。在1064 nm的波长下获得具有与偏振分束器,偏振无关的二端口分束器或-1级高效偏振无关的光栅不同的优化光栅轮廓,并通过使用进行验证严格的耦合波分析。正弦光栅的性能优于传统的矩形光栅,对实际应用可能有用。

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