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A new method for the calculation of propagation constants and field profiles of guided modes of nonlinear channel waveguides based on the effective index method

机译:基于有效指标法的非线性通道波导导模传播常数和场剖面计算的新方法

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摘要

In this paper, an extension of the effective index method (EIM) to waveguiding structures containing ideal or saturable third-order nonlinear materials is presented. By applying separation of variables to the dominant field component, the complete problem is subdivided into two scalar problems in the lateral and transverse direction, as in the case of the normal EIM. Making use of the strong transverse confinement, as observed in most real waveguide structures, the nonlinear index changes of the various transverse sections can be lumped into nonlinear effective indexes of the equivalent layered planar structures. By using these nonlinear effective indexes in self-consistent field calculations in the transverse direction, a complete approximate solution is obtained. In this way, the amount of computational effort required for the calculation of the effective indexes and field profiles of the waveguides can be reduced significantly.
机译:在本文中,提出了有效折射率方法(EIM)对包含理想或可饱和三阶非线性材料的波导结构的扩展。通过将变量的分离应用于主场分量,与正常EIM一样,将完整问题在横向和横向上细分为两个标量问题。利用在大多数实际波导结构中观察到的强横向约束,可以将各个横截面的非线性指数变化集中到等效分层平面结构的非线性有效指数中。通过在横向自洽场计算中使用这些非线性有效指标,可以获得完整的近似解。这样,可以显着减少波导的有效折射率和场分布的计算所需的计算量。

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