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Multilayered model in optics and quantum mechanics

机译:光学和量子力学中的多层模型

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Three types of dispersion equations are analyzed that describe the eigenvalues of the effective refractive index of a multilayer plane optical waveguide and the energy eigenvalues of a quantum particle placed in a piecewise constant potential field. The first equation (D1) is derived by setting to zero the determinant of the system of linear equations produced by matching the solutions in the layers. The second equation (D2) is obtained using the well-known method of characteristic matrices. The third equation has been obtained in the general case by the author and is known as a multilayer equation. Simple relations between the three equations are established. It is shown that the set of roots of D2 exactly coincides with the set of eigenvalues of the multilayer problem, while the roots of D1 and the multilayer equation contain those equal to the refractive index in the optical case (or to the potential in the quantum case) in internal layers of the system, which may be superfluous. Examples are presented.
机译:分析了三种类型的色散方程,它们描述了多层平面光波导的有效折射率的特征值和置于分段恒定势场中的量子粒子的能量特征值。通过将匹配各层中的解而生成的线性方程组的行列式设置为零,可以得出第一方程(D1)。使用公知的特征矩阵方法获得第二方程式(D2)。在一般情况下,第三方程是由作者获得的,被称为多层方程。建立了三个方程之间的简单关系。结果表明,D2的根集与多层问题的特征值集完全重合,而D1和多层方程的根包含与光学情况下的折射率(或量子中的电势)相等的根。在系统的内部层中,可能是多余的。给出了例子。

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