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Self-enhancement effect during nonvolatile holographic storage in photochromic LiNbO_3: Fe: Mn crystals

机译:LiNbO_3:Fe:Mn晶体光致变色非易失性全息存储过程中的自增强效应

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Through theoretical investigation on the nonvolatile holographic storage in photochromic LiNbO_3 : Fe : Mn, we have found self-enhancement effect caused by beam-coupling effect during both Recording and optical fixing phases, and proceeded a steady-state analysis and a numerical simulation About the effect. The experimental results obtained by self-enhancement and self-depletion are consis- Tent with the theoretical analysis. From the theoretical and experimental studies, it is seen that the Highest diffraction efficiency available from the self-enhancement during both the recording and fixing Phases may be twice as large as the lowest one from the self-depletion. It demonstrates that self-en- Hancement effect has to be considered and utilized in practical applications for nonvolatile holographic Storage. To the best of our knowledge, it is the first time to report the relevant results.
机译:通过对光致变色LiNbO_3:Fe:Mn中非易失性全息存储的理论研究,我们发现了在记录和光学固定阶段均由光束耦合效应引起的自增强效应,并进行了稳态分析和数值模拟。影响。通过自我增强和自我耗竭获得的实验结果与理论分析相一致。从理论和实验研究中可以看出,在记录和定影阶段,自增强的最高衍射效率可能是自耗尽的最低衍射效率的两倍。它表明在非挥发性全息存储的实际应用中必须考虑并利用自我增强效应。据我们所知,这是第一次报告相关结果。

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