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ANALYTICAL MODELING AND COMPUTATIONAL ANALYSIS ON TOPOLOGICAL PROPERTIES OF 1-D PHONONIC CRYSTALS IN ELASTIC MEDIA

机译:弹性介质中1-D子晶体晶体拓扑特性的分析模拟与计算分析

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摘要

The topological interface state governed by topological phononic crystals (PnC) can potentially host one-way, backscattering free nontrivial edge modes, immune to defects and sharp edges. We study here 1D topological phononic crystals with interface modes/states generated by an exchange of wave mode polarization and geometric phases, using the spectral element method with Timoshenko beam model for flexural wave propagation. The constitutive relations for the longitudinal wave, and modeling and formulation are derived for theoretical band structure and frequency response studies. The analysis is validated by finite element numerical simulations. The geometric phases of the Bloch bands are determined by numerical Zak phase analysis. As the geometric properties of the PnC vary, a band transition resulting from an exchange in wave mode polarization is observed and the symmetry characteristics of the Bloch bands are determined. The geometric phases provide useful information about the interface mode that is generated when the mode transition frequency is common between the bandgaps of topological PnC. We further conduct theoretical and numerical studies on the presence of interface state and excellent agreement observed between both models is reported. The theoretical details of the topological PnC with protected interface mode can be helpful for better understating of research in phononic crystals.
机译:通过拓扑声子晶体(PNC)控制的拓扑界面状态可能是持续的单向,反向散射的无变偏缘模式,免受缺陷和锋利边缘。我们在这里研究了使用带有TimosheNKO光束模型的波模偏振和几何阶段产生的界面模式/状态,利用带有Timoshenko光束模型的弯曲波传播的纤维素元素方法,与界面模式/状态进行。为理论带结构和频率响应研究得出了纵向波和建模和制剂的本构关系。通过有限元数值模拟验证分析。通过数值Zak相分析确定Bloch带的几何相。由于PNC的几何特性变化,观察到由波模式偏振中的交换产生的频带转换,并且确定了BLOCH带的对称特性。几何阶段提供关于当模式转换频率在拓扑PNC的带盖之间常见时产生的接口模式的有用信息。我们进一步对界面状态的存在进行了理论和数值研究,并报告了两种模型之间观察到的优秀协议。具有受保护接口模式的拓扑PNC的理论细节可以有助于更好地低估声子晶体的研究。

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