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Nonvolatile holographic storage properties of doubly-doped LiNbO_3:Fe:Ni crystals

机译:双掺杂LINBO_3:FE:NI晶体的非易失性全息储存性能

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Doubly-doped LiNbO_3:Fe:Ni crystals have been grown by Czochralski technique. The transmission spectrum and the effect of light-induced absorption change by ultraviolet (UV) illumination are measured. Nonvolatile holographic storage is realized by red light (633 nm) recording and UV (365 nm) sensitizing. The results show that the saturation diffraction efficiency, the fixing diffraction efficiency, and the recording sensitivity of oxidized LiNbO_3:Fe:Ni crystals are higher than those of other reported doubly-doped LiNbO_3 crystals. Besides, the nonvolatile holographic recording can't be realized by green light (514 nm) recording and UV light (365 nm) sensitizing. LiNbO_3:Fe:Ni has the potential of being a new highly efficient nonvolatile holographic recording material.
机译:双重掺杂的LINBO_3:FE:Ni晶体由Czochralski技术生长。 测量通过紫外线(UV)照明的透射光谱和光诱导的吸收变化的效果。 非易失性全息存储通过红光(633nm)记录和紫外线(365nm)敏化来实现。 结果表明,饱和衍射效率,固定衍射效率和氧化的LINBO_3:Fe的记录敏感性:Ni晶体高于其他报告的双掺杂Linbo_3晶体。 此外,非易失性全息记录不能通过绿灯(514nm)记录和UV光(365nm)敏化来实现。 LINBO_3:FE:NI具有成为一种新的高效非易失性全息记录材料。

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