Internal mechanism of perfect-reflector-backed dielectric gratings to achieve 100% diffraction efficiency

Lifeng Li
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引用次数: 0

Abstract

The work started 20 years ago [Appl. Opt. 42, 6255 (2003) [CrossRef] ] investigating the physical mechanism of multilayer dielectric reflection gratings to achieve 100% diffraction efficiency is completed to offer much deeper insight than before. How different scattering matrix elements of the top periodic surface corrugation contribute to the {-}{1}st-order efficiency of such a compound grating is unveiled analytically using a minimum set of real parameters. The two diffraction amplitudes transmitted through the top corrugation play a dominant role in enabling 100% diffraction efficiency. Simple necessary and sufficient conditions for 100% efficiency are derived. Moreover, the role of the reflection phase of the perfect reflector, including the contribution of the optical path between the top corrugation and the reflector, is emphasized.
完美反射器背衬介质光栅的内部机制,实现 100% 的衍射效率
20 年前[Appl. Opt. 42, 6255 (2003) [CrossRef] ] 开始的研究多层介质反射光栅实现 100% 衍射效率的物理机制的工作已经完成,提供了比以前更深入的见解。利用一组最小的实际参数,通过分析揭示了顶部周期性表面波纹的不同散射矩阵元素如何影响这种复合光栅的{-}{1}{-}{1}阶效率。通过顶部波纹传输的两个衍射振幅在实现 100% 衍射效率方面起着主导作用。研究还得出了实现 100% 效率的简单必要条件和充分条件。此外,还强调了完美反射镜反射相位的作用,包括顶部波纹和反射镜之间光路的贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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