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INTENSITY-DEPENDENT DISPERSION IN NONLINEAR PHONONIC LAYERED SYSTEMS

机译:非线性光子分层系统中的强度相关色散

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Phononic crystals are typically considered to operate in regimes where a linear constitutive relationship provides an adequate representation. For high intensity wave propagation, however, weak nonlinearities can affect performance. For example, a cubic nonlinearity gives rise to frequency shifting and thus a shift in band gap location. In the study of nonlinear optics, a cubic term has been treated using a quasi-linear constitutive relationship with intensity dependent properties. This technique is explored herein for generating nonlinear dispersion relationships for the elastic case. In addition, a perturbation method developed previously for discrete systems, used in conjunction with a finite element discretization, is proposed as an alternative dispersion analysis tool. Simulations of the fully nonlinear governing equations are provided as validation of the predicted dispersion curves.
机译:通常认为,声子晶体在线性本构关系可提供适当表示的状态下工作。但是,对于高强度波传播,弱的非线性会影响性能。例如,三次非线性引起频率偏移,从而引起带隙位置的偏移。在非线性光学的研究中,已经使用具有强度依赖特性的准线性本构关系来处理三次项。本文探讨了该技术,用于为弹性情况生成非线性色散关系。另外,作为替代色散分析工具,提出了一种针对离散系统的先前开发的摄动方法,该方法与有限元离散化结合使用。提供了完全非线性控制方程的仿真,以验证预测的色散曲线。

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