Chon J C, Feng W, Mickelson A R
Appl Opt. 1993 Dec 20;32(36):7572-80. doi: 10.1364/AO.32.007572.
The photorefractive effect in titanium-in-diffused LiNbO(3) waveguides is studied both experimentally and theoretically. Measurements of mode size and transmitted optical power as a function of input optical power are presented. The diffusion constants in the diffusion model and the unknown parameters in Kukhtarev's model are determined from measurements of the near-field intensity profiles at low and at high intensity levels. These parameters can then be used to predict waveguide behavior as a function of the input power level. The simulated behavior closely resembles that observed experimentally. Calculated corrections for thermally induced index perturbation show that the thermal effects are higher-order corrections to the dominant photorefractive effect.
对钛扩散铌酸锂(LiNbO₃)波导中的光折变效应进行了实验和理论研究。给出了模式尺寸和传输光功率随输入光功率变化的测量结果。根据低强度和高强度水平下近场强度分布的测量结果,确定了扩散模型中的扩散常数和库克塔廖夫模型中的未知参数。然后,这些参数可用于预测波导行为随输入功率水平的变化。模拟行为与实验观察到的行为非常相似。对热致折射率微扰的计算校正表明,热效应是对主导光折变效应的高阶校正。