Elasto-optic and roto-optic contribution to the photorefractive effect

M. Zgonik, P. Günter
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Abstract

In a photorefractive experiment the space-charge grating is built-up along a certain axis and it modulates the refractive indices via the linear electro-optic (EO) effect. In many of the works in the field there is an on-going dilemma which EO coefficient and also dielectric constants to use in order to model the photorefractive effect.[1] The relevance of the question lies in the fact that the unclamped (stress-free) and the clamped (strain-free) values typically differ by more than a factor of two. Experiments in KNbO3[2] and BaTiO3[3] tend to indicate that the unclamped values are more appropriate. In this contribution we show that neither the clamped nor the unclamped linear EO coefficients are to be used without caution but the appropriate effective coefficients must be calculated for every particular crystal symmetry and sample orientation.
弹性光学和旋转光学对光折变效应的贡献
在光折变实验中,空间电荷光栅沿一定的轴线构建,并通过线性电光效应调制折射率。在该领域的许多工作中,存在一个持续的困境,即EO系数和介电常数用于模拟光折变效应。[1]这个问题的相关性在于,未夹紧(无应力)和夹紧(无应变)的值通常相差超过两倍。在KNbO3[2]和BaTiO3[3]中的实验倾向于表明,无箝位值更合适。在这篇文章中,我们表明,无论是箝位还是非箝位的线性EO系数都不能不小心使用,但必须为每个特定的晶体对称性和样品方向计算适当的有效系数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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