高等学校化学学报
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付申成,刘益春
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FU Shencheng, LIU Yichun
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摘要: 全息光存储利用光的干涉和衍射原理记录并重建三维信息,具有超高存储密度和并行读写能力,是信息存储的重要发展方向。在诸多全息存储介质中,偶氮分子因其分子体积小、偏振敏感、光响应速度快、折射指数变化幅度大、与聚合物基质兼容性好等优势而倍受关注。本文重点回顾了四十年来偶氮材料在偏振全息存储和表面浮雕光栅领域的发展情况,特别展示了偶氮分子掺杂的聚合物薄膜高密度复用偏振全息存储的设计思路和实验结果,分析了偶氮基薄膜用于光子集成芯片的可行性。
关键词: 偶氮分子, 偏振全息, 表面浮雕光栅
Abstract: Holographic optical storage exhibits recording and reconstructing ability for three-dimensional information based on optical interference and diffraction. It has ultra-high storage density and parallel reading and writing ability, and becomes an important developing direction of information storage. Among various kinds of holographic storage media, azo molecules have attracted much attention due to their advantages such as small molecular size, polarization sensitivity, fast light response, large refractive index changes, and high compatibility with polymer matrix. Herein, we review the applications of azo materials in polarization holographic storage and surface relief gratings in the past 40 years, especially the design and experimental results of high-density multiplexing polarization holographic storage in azo molecule-doped polymer thin films. The feasibility of application of azo-based thin films in photon integrated chip is also analyzed.
Key words: Azo molecules, Polarization holography, Surface relief gratings
中图分类号:
O438.1
TrendMD:
付申成 刘益春. 偶氮基薄膜的全息光存储. 高等学校化学学报, doi: 10.7503/cjcu20250211.
FU Shencheng, LIU Yichun. Holographic Optical Storage in Azo-based films. Chem. J. Chinese Universities, doi: 10.7503/cjcu20250211.
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链接本文: http://www.cjcu.jlu.edu.cn/CN/10.7503/cjcu20250211