首页> 外文会议>Conference on Photorefractive Fiber and Crystal Devices: Materials, Optical Properties, and Applications >The sinusoidal oscillatory diffraction induced by strong refractive index change in reduced Fe:LiNbO3 crystals
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The sinusoidal oscillatory diffraction induced by strong refractive index change in reduced Fe:LiNbO3 crystals

机译:通过强折射率变化诱导的正弦振荡衍射减少Fe:Linbo3晶体

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In this paper two-beam interference experiments are performed to investigate the diffraction characteristics of volume gratings in Fe:LiNbO3 crystals (0.15wt% Fe2O3), the results show that the dependence of the diffraction characteristics on the oxidization-reduction state and the oscillatory diffraction can be found in the reduced crystals. The theoretical analysis shows that the strongest space charge field can be formed in the reduced crystals, which induce the strong refractive index change, and because of the sin2 relation between refractive index change and diffraction efficiency, the oscillatory diffraction can be found in the reduced crystals. In application for high diffraction efficiency the oxidized treatment should be performed for Fe:LiNbO3 crystals so that the depth integral of saturated refractive index change is equal to π/2.
机译:在本文中,进行双光束干扰实验以研究Fe:LinbO3晶体(0.15wt%Fe 2 O 3)中体积射击的衍射特性,结果表明衍射特性对氧化还原状态和振荡衍射的依赖性可以在减少的晶体中找到。理论分析表明,最强的空间电荷场可以形成在诱导强折射率变化的减少的晶体中,并且由于折射率变化与衍射效率之间的SIN2关系,可以在减少的晶体中找到振荡衍射。在高衍射效率的应用中,应对Fe:LinbO3晶体进行氧化处理,使得饱和折射率变化的深度积分等于π/ 2。

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