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首页> 外文期刊>Journal of Lightwave Technology >Vector analysis of the space-charge field in nonconventionally biased photorefractive crystals
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Vector analysis of the space-charge field in nonconventionally biased photorefractive crystals

机译:非常规偏置光折变晶体中空间电荷场的矢量分析

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摘要

A theoretical model to numerically study the local space-charge field induced by light in a photorefractive crystal biased with two independent, perpendicularly oriented external static fields is introduced. This model appears attractive because it allows varying, in the crystal transverse plane, of the orientation of the external biasing static field with respect to that of the optical-field vector, then enhancing the tensorial properties of the crystal. The numerical analysis has revealed that, in a nonconventional biasing configuration, the spatial distributions of the space-charge-field vector transversal components exhibit a further anisotropy that has not been shown up to now. Nevertheless, from a practical point of view, such a boundary configuration could allow better management of the focusing characteristics of the material.
机译:引入了一种理论模型,该模型对由两个独立的,垂直定向的外部静态电场偏置的光折变晶体中的光引起的局部空间电荷场进行数值研究。该模型之所以具有吸引力,是因为它允许在晶体横向平面中改变外部偏置静态场相对于光场矢量的方向,从而增强了晶体的张量特性。数值分析表明,在非常规偏置配置中,空间电荷场矢量横向分量的空间分布还显示出迄今为止尚未显示的另一种各向异性。但是,从实际的角度来看,这种边界配置可以更好地管理材料的聚焦特性。

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