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Spatial solitons in biased photorefractive materials with both the linear and quadratic electro-optic effects

机译:具有线性和二次电光效应的偏光折射材料中的空间孤子

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摘要

Unlike previous cases discussed, non-linear changes of refractive index in the photorefractive (PR) materials are governed by both the linear and quadratic electro-optic (EO) effects simultaneously now. Here, the evolution equations of one-dimension spatial solitons resulting from both the linear and quadratic EO effect are presented firstly. Under appropriate conditions, our analysis indicates that bright, dark, and gray solitons can exist in the steady-state regime. Moreover, stabilities of bright and dark soliton propagation are analyzed by means of beam propagation methods. The analytical solutions in the low-amplitude regime are also obtained. The self-deflection of such bright spatial solitons arising from diffusion effect in biased PR crystals involving both the linear and quadratic EO effects has been investigated symmetrically by the use of numerical techniques and perturbation methods.
机译:与前面讨论的情况不同,现在光折射(PR)材料中折射率的非线性变化同时受到线性和二次电光(EO)效应的控制。在此,首先提出了由线性和二次EO效应产生的一维空间孤子的演化方程。在适当的条件下,我们的分析表明,稳态状态下可以存在亮,暗和灰色孤子。此外,通过光束传播方法分析了明暗孤子传播的稳定性。还获得了低振幅状态下的解析解。通过使用数值技术和微扰方法,对称地研究了由偏光PR晶体中的扩散效应引起的这种明亮的空间孤子的自偏转,其中偏斜PR晶体同时涉及线性和二次EO效应。

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