...
首页> 外文期刊>Journal of optical technology >Formation and properties of volume and relief holographic gratings in photopolymer materials
【24h】

Formation and properties of volume and relief holographic gratings in photopolymer materials

机译:光敏聚合物材料中体积和浮雕全息光栅的形成和性能

获取原文
获取原文并翻译 | 示例

摘要

Subject of study. Formation conditions, diffraction, and selective properties of various types of holographic gratings in photopolymer materials are studied. Aim of study. The diffraction and selective properties of one- dimensional non-slanted and slanted gratings, relief gratings, hybrid structures, and two-dimensional gratings in various photopolymer materials under a wide range of radiation incidence angles in three-dimensional space are investigated, and the conditions for expanding the angular range in which high diffraction properties are achieved is determined. Methodology. Unlike traditional techniques, transmission gratings' diffraction efficiency and angu- lar selectivity were studied using the incidence of radiation in a wide angular range in different planes with changes in grating orientations. Main results. The conditions for obtaining effective transmission volume gratings in advanced photopolymer materials and their properties are determined. It is shown that, when the radiation is inci- dent in the Bragg plane, the maximum diffraction efficiency is achieved in the angles ranging up to 80 DEG; with the full width at half maximum of the angular selectivity contour up to 120 DEG;. Maximum diffraction efficiency is achieved in some directions of radiation passage through the grating (oblique transmission) that differ from the traditional Bragg direction. The maximum diffraction efficiency is achieved at large angles of incidence, approximately 70 DEG;. The conditions for forming effective hybrid structures combining the properties of a volume and relief grating are determined. It is shown that the range of radiation incidence angles is extended due to the contribution of the relief component of the hybrid structure. The possibility of obtaining effective relief gratings in a previously unexplored serial photopolymer material is shown. The conditions for obtaining effective two-dimensional gratings with the possibility of a smooth change in the intensities in diffracted beams when the element is rotated are determined. Practical significance. Angular range expansion can be achieved by varying the characteristics and orientation of the gratings, eliminating the need for stacked elements. The established properties of holographic gratings can be used to solve problems in solar energy, diffractive optics, and security printing technologies. COPY; 2023 Optica Publishing Group
机译:研究主题。研究了光敏聚合物材料中各类全息光栅的形成条件、衍射和选择性能。研究目的。研究了各种光敏聚合物材料在三维空间宽范围辐射入射角下的衍射和选择性能,确定了扩大角范围的条件,从而实现了高衍射性能。方法论。与传统技术不同,该技术利用光栅方向变化在不同平面的宽角范围内的辐射入射率来研究透射光栅的衍射效率和角度选择性。主要结果。确定了先进光敏聚合物材料获得有效透射体积光栅的条件及其性能。结果表明,当辐射在布拉格平面上时,在高达80°的角度范围内实现了最大的衍射效率;在角选择性等值线的一半最大值处的全宽可达120°。在与传统布拉格方向不同的光栅辐射通过的某些方向(斜透射)上实现了最大的衍射效率。最大衍射效率是在大入射角(约70°)下实现的。确定了结合体积和浮雕光栅特性形成有效混合结构的条件。结果表明,由于混合结构的地貌分量的贡献,辐射入射角的范围扩大了。显示了在以前未开发的系列光敏聚合物材料中获得有效浮雕光栅的可能性。确定了获得有效二维光栅的条件,当元件旋转时衍射光束的强度可能平滑变化。现实意义。通过改变光栅的特性和方向,可以实现角范围扩展,无需堆叠元件。全息光栅的既定特性可用于解决太阳能、衍射光学和安全印刷技术中的问题。2023 光学出版集团

著录项

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