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Photo-thermo-refractive glasses for high-efficiency Bragg gratings in UV, visible and IR. regions

机译:用于高效布拉格光栅的光热折射眼睛,可见和IR。地区

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The wide spread use of holographic elements is constrained by the lack of available holographic materials. Hariharan's recent book notes that among the photosensitive materials available for high efficiency hologram recording, each have merits, as well as drawbacks. This paper describes properties and performance of inorganic glass as a medium for volume hologram recording, which meets most requirements cited. The use of inorganic photosensitive glasses for phase hologram recording was described several years ago (see survey in Ref. 2). The two-step process of exposure to UV radiation and thermal development (photo-thermo-refractive process) has been used to record phase patterns in glass defined as photo-thermo-refractive (PTR). Relative diffraction efficiency of up to 90% was recorded at that time, however, strong scattering from the thermal development process resulted in a low absolute diffraction efficiency, not exceeding 45%.
机译:全息元素的广泛传播使用受到缺乏可用全息材料的限制。 Hariharan最近的一本书指出,在可用于高效全息图录制的光敏材料中,每个都有优点,以及缺点。本文介绍了无机玻璃的性能和性能作为批量全息图记录的媒介,这符合大多数要求。几年前描述了使用用于相位全息图记录的无机光敏眼镜(参见参考文献2)。暴露于紫外线辐射和热敏(光热折射过程)的两步过程已被用于记录被定义为光热折射(PTR)的玻璃中的相位图案。然而,当时记录高达90%的相对衍射效率,然而,从热发育过程中的强烈散射导致低绝对衍射效率,不超过45%。

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