Günter P, Zgonik M
Opt Lett. 1991 Dec 1;16(23):1826-8. doi: 10.1364/ol.16.001826.
In a usual photorefractive experiment neither the unclamped nor the clamped linear electro-optic coefficients should be used for calculating the refractive-index change. We show that a crystal deformation in a form of a static plane wave is produced by the space-charge electric-field grating. The total refractive-index change is then calculated by adding together the strain-free electro-optic contribution and the elasto-optic contribution, properly taking into account also the rotation of the axes of the optical indicatrix that is produced by shear deformations. This roto-optic contribution to the photorefractive effect has been overlooked until now.
在通常的光折变实验中,计算折射率变化时既不应使用未夹紧的线性电光系数,也不应使用夹紧的线性电光系数。我们表明,空间电荷电场光栅会产生静态平面波形式的晶体形变。然后,通过将无应变电光贡献和弹光贡献相加来计算总的折射率变化,同时还要适当考虑由剪切形变产生的光学指标轴的旋转。这种对光折变效应的旋光贡献迄今一直被忽视。