Nonlinear layers with controllable permittivity at frequencies of scattering and generation

L. Angermann, V. Yatsyk
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Abstract

Nonlinear dielectrics with controllable permittivity begin to find broad applications in device technology and are subject of intense studies in the range of both radio and the optical frequencies. We focus on the development of a mathematical model, an effective algorithm and a self-consistent numerical analysis of the multifunctional properties of resonant scattering and generation of oscillations by nonlinear, cubically polarisable structures.
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在散射和产生频率下具有可控介电常数的非线性层
具有可控制介电常数的非线性介电体开始在器件技术中得到广泛的应用,并在无线电和光学频率范围内受到广泛的研究。我们的重点是一个数学模型的发展,一个有效的算法和自洽的数值分析共振散射和产生振荡的非线性,三次极化结构的多功能特性。
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