Fujiwara T, Srivastava R, Cao X, Ramaswamy R V
Opt Lett. 1993 Mar 1;18(5):346-8. doi: 10.1364/ol.18.000346.
A quantitative comparison of the photorefractive effect in proton-exchanged (PE), annealed-proton-exchanged (APE), and Ti-diffused LiNbO(3) waveguides in the visible region is reported. In the low-intensity region, the optically induced index change in PE/APE waveguides is almost 3 orders of magnitude smaller than that of Ti-diffused waveguides for a given intensity, primarily as a result of the increased dark conductivity owing to proton exchange. However, the photorefractive index change at higher intensities is almost the same for all the waveguides. Our results indicate that the optically induced space-charge field is relatively independent of the concentration or the valence state of iron impurities and the waveguide fabrication process.
报道了在可见光区域对质子交换(PE)、退火质子交换(APE)和钛扩散LiNbO₃波导中光折变效应的定量比较。在低强度区域,对于给定强度,PE/APE波导中光致折射率变化比钛扩散波导小近3个数量级,这主要是由于质子交换导致暗电导率增加。然而,在较高强度下,所有波导的光折变折射率变化几乎相同。我们的结果表明,光致空间电荷场相对独立于铁杂质的浓度或价态以及波导制造工艺。