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Optimization technique for piezo- and acousto-optical interactions geometry of light in anisotropic materials for example of pure and MgO-doped lithium niobate crystals

机译:各向异性材料中光的压电和声光相互作用几何优化技术,例如纯和MgO掺杂锂铌酸锂晶体

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In this paper new approach to the spatial anisotropy analysis of piezo-, elasto- and acousto-optical effects on the basis of indicative surfaces for different components of tensor describing these effects has been proposed and the optimization technique for such interactions of light with mechanical field or acoustical wave in the anisotropic materials has been designed. Piezo- and elasto-optical effects as well as figure of merit were spatially analyzed basing on indicative surfaces construction for example of widely used pure and MgO-doped lithium niobate crystals. The obtained results provide the efficiency increasing of acousto-optical cells based on these crystals.
机译:本文提出了基于描述这些效果的张量不同组分的指示性表面的压电,弹性和声学效应的空间各向异性分析的新方法,并对机械场轻的光相互作用的优化技术设计了各向异性材料中的声波。压电和弹性光学效果以及物理的图谱分析基于指示性表面结构,例如广泛使用的纯净和MgO掺杂的铌酸锂晶体。所得结果提供了基于这些晶体的声光电池的效率。

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