首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Analysis of volume-phase-grating characteristics that a variety of refractive index distributions influence. Part 2: Analysis of spectral bandwidths and angular bandwidths, and the derivation of these equations
【24h】

Analysis of volume-phase-grating characteristics that a variety of refractive index distributions influence. Part 2: Analysis of spectral bandwidths and angular bandwidths, and the derivation of these equations

机译:分析各种折射率分布的体积相位光栅特性。 第2部分:分析光谱带宽和角度带宽,以及这些方程的推导

获取原文
获取原文并翻译 | 示例
           

摘要

To expand the spectral bandwidths with high diffraction efficiency of volume phase (VP) gratings, it is important to know the influence of a variety of refractive index distributions (RIDs) inside the recording material on the bandwidths. The influence of various graded types of RIDs on the full width at half the maximum of the spectral bandwidth (lambda(FWHM)) and the angular bandwidth (theta(FWHM)) is investigated in the Bragg regime. It becomes clear that various graded types of RIDs influence their bandwidths and the characteristics, and the combination of the RIDs and refractive index modulation (n(m)) is the most important factor for obtaining the large bandwidths of VP gratings. Theoretically, the lambda(FWHM) are obtained as the values of 149.7 nm and 257.6 nm (n(m) = 0.045) for the wavelengths of 900 nm and 1550 nm, respectively. Furthermore, I have succeeded in developing the expression for lambda(FWHM) and theta(FWHM), using the proportional characteristics of VP gratings investigated in this work. The correlative coupling-length coefficients "G-factors" devised as a variety of RID functions in the previous paper are introduced into them. It is apparent that the derived equations of the bandwidths can be adapted to any graded type of RID that changes continuously from a triangular type to a rectangular type of VP grating, which has not been reported yet. The equations have made it easy to design lambda(FWHM) and theta(FWHM) of VP gratings. (c) 2019 Optical Society of America
机译:为了扩展具有高衍射效率的体积相(VP)光栅的光谱带宽,重要的是要知道在带宽上的记录材料内部的各种折射率分布(RID)的影响非常重要。在布拉格政权中研究了各种分级类型的除去在频谱带宽(Lambda(FWHM))和角带宽(θ(fwhm))的全部宽度下的全宽。显然,各种分级类型的除渣会影响它们的带宽和特征,以及除去和折射率调制的组合(n(m))是获得VP光栅的大带宽的最重要因素。从理论上讲,对于900nm和1550nm的波长,将λ(FWHM)作为149.7nm和257.6nm(n(m)= 0.045)的值获得。此外,我已经成功地使用本工作中调查的VP光栅的比例特征来开发λ(FWHM)和θ(FWHM)的表达。作为先前纸张中的各种除去功能设计的相关耦合长度系数“G型”被引入它们。显而易见的是,带宽的导出方程可以适用于任何渐变类型的除去,其从三角形类型连续地变为矩形类型的VP光栅,这尚未报道。方程式使得VP光栅的Lambda(FWHM)和Theta(FWHM)易于设计。 (c)2019年光学学会

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号