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Scattering and generation properties of cubically polarisable layers with negative and positive cubic susceptibility of the medium

机译:介质负阳性立方体易感性截面和发电性能

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The problem of scattering and generation of waves on an isotropic, non-magnetic, linearly polarised (E-polarisation), non-linear, layered, cubically polaris-able, dielectric structure, which is excited by a plane wave, is investigated in the domain of resonance frequencies. The resulting mathematical model can be represented equivalently by a system of non-linear boundary-value problems of Sturm — Liouville type or by a system of one-dimensional non-linear Fredholm integral equations. The solutions of these problems are approximated numerically by the help of quadrature methods and iterative procedures which require the solution of a linear system in each step. In this way the approximate solution of the non-linear problems is described by means of solutions of linear problems with an induced non-linear dielectric permeability. The analytical continuation of these linear problems into the region of complex values of the frequency parameter allows us to switch to the analysis of spectral problems. Their eigenfrequencies form a discrete, countable set of points, with the only possible accumulation point at infinity, and lie on a complex two-sheeted Riemann surface. Some results of calculations of characteristics of the scattered field of a plane wave are presented, taking into account the third harmonic generated by nonlinear cubically polarisable layers with both negative as well as positive values of the cubic susceptibility of the medium. It is shown that layers with negative and positive values of the coefficient of cubic susceptibility of the non-linear medium have fundamentally different scattering and generation properties. For instance, in the case of negative values of the susceptibility, a decanalisation of the electromagnetic field can be detected.
机译:研究了通过平面波激发的各向同性,非磁性,线性偏振(E偏振),非线性,层状,近极偏振,非线性,层状,近距离的电介质结构的散射和产生波的问题。共振频率的领域。由此产生的数学模型可以通过STURM - Liouville类型的非线性边值问题或一维非线性Fredholm积分方程的非线性边值问题的系统等效。这些问题的解决方案通过正交方法和迭代程序在数量上近似,这些方法在每个步骤中需要线性系统的解决方案。以这种方式,通过诱导的非线性介电渗透性的线性问题的解,描述了非线性问题的近似解。这些线性问题的分析继续在频率参数的复数值区域中允许我们切换到光谱问题的分析。他们的特征频繁形成了一个离散,可数的一组点,具有无限远处的唯一可能的累积点,并位于复杂的两张riemann表面上。提出了一种平面波的散射场的特性的一些结果,考虑了由非线性近距离层产生的第三次谐波,其中介质的立方易感性的正值以及正值。结果表明,具有非线性介质的立方体敏感系数的阴性和正值的层具有基本不同的散射和产生性能。例如,在易感性的负值的情况下,可以检测电磁场的解衰分。

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