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Application of a principle of mathematical models reduction for optimal vector of induced optical effects in crystalline materials for optoelectronics

机译:数学模型约简原理在光电子晶体材料中感应光学效应最佳矢量的应用

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The detection and elimination principle of redundant elements in the mathematical model is described. This principle has been used for the reduction of various mathematical models of dynamical systems in the form of systems of differential equations and artificial neural networks. In a simplified form, this principle is applied to the reduction model of optimal vector for global maximum of induced optical effect in crystalline materials. On the example of linear electro-optic effect in lithium niobate crystals we have found the optical coefficients that are fully or partially do not affect the resulting global maximum for investigated indicative surfaces.
机译:描述了数学模型中冗余元素的检测和消除原理。该原理已被用于以微分方程和人工神经网络的形式简化动力学系统的各种数学模型。以简化的形式,该原理被应用于针对结晶材料中的诱导光学效应的全局最大值的最优矢量的约简模型。在铌酸锂晶体中线性电光效应的例子中,我们发现完全或部分光学系数不会影响所研究指示性表面的整体最大值。

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