基于扩散效应以及暗辐射强度对温度的依赖关系,研究了温度对光折变屏蔽明空间孤子自偏转特性的影响.将明孤子作为入射孤子波,采用数值方法求解含扩散项的波传播方程.结果表明,考虑温度对暗辐射和扩散系数的影响,光折变屏蔽明空间孤子在传播过程中将发生自偏转,光束的中心沿一个抛物线轨迹偏转,并且光束中心的偏转距离随温度增加而增加,在一个特征温度处达到最大值,在高温区域和低温区域此偏转距离趋于零.光束中心的最大偏转距离和特征温度都随入射光强的增加而增加.
Temperature effects on the self-deflection of bright screening spatial solitons in photorefractive crystal are investigated by taking into account the temperature dependence of both diffusion effects and dark irradiation. Taking the bright soliton as the input solitary beam, numerically solving the beam propagation equation in which the diffusion term has been taken into account, it is found that the center of the solitary beam moves along a parabolic trajectory and, moreover, the bending distance of the bright solitary beam center increases first, reaches its maximum value at a characteristic temperature and, then decreases as temperature rises and, approaches zero at low and high temperatures. Both the maximum value and characteristic temperature increase with the input power density.