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Thermal fixation of the photorefractive holograms recorded in lithium niobate and related crystals

机译:铌酸锂和相关晶体中记录的光折变全息图的热固定

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With emphasis on LiNbO3 the basic principles, the developments over four decades, and recent applications of the thermal fixation of photorefractive holograms are reviewed. Thermal fixing is the most promising method to realize optically stable memories in photorefractive media. The microscopic origin of thermal fixing is mainly caused by screening the electronic space-charges by protons thermally activated at about 120 degrees C. After fixing a diffraction efficiency comparable to that of untreated crystals is achieved and lifetimes of at least 2 years have been observed, whereas for special arrangements scientific sound estimates point to long terms as high as 100 years. A theoretical description is quite well established and will guide further improvements. Thermally fixed holograms have been tested in nonvolatile optical storage systems based on hologram multiplexing and are the basis in narrow-band devices with very high angular selectivity.
机译:重点介绍了LiNbO3的基本原理,四十年的发展以及光折射全息图热固定的最新应用。热定影是在光折射介质中实现光学稳定存储的最有前途的方法。热固定的微观原因主要是由通过在约120摄氏度下热活化的质子筛选电子空间电荷引起的。固定后,可实现与未处理晶体相当的衍射效率,并且观察到至少2年的使用寿命,而对于特殊的安排,科学合理的估算指出,长期寿命可能长达100年。理论描述已经相当完善,将指导进一步的改进。热固定全息图已经在基于全息图复用的非易失性光存储系统中进行了测试,并且是具有很高角度选择性的窄带设备的基础。

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