论文标题
异常点和离散机械超材料的散射
Exceptional points and scattering of discrete mechanical metamaterials
论文作者
论文摘要
特殊点(EPS)是参数线性算子的复杂奇异性,其中两个或多个特征值和特征向量合并。 EP由于其强大的波滤波,掩饰和传感应用而引起了对机械超材料的兴趣。这项工作使用超材料(MM)系统的离散模型研究了EPS附近的带拓扑和散射行为。 EPS的存在及其物理表现的存在将特别关注对称的考虑和散射行为。这里使用具有可调参数的离散质量弹簧模型,以基本形式阐明与EP相关的现象。分析了转移和散射矩阵,以提供有关与互惠和基本对称性相关的限制的实际见解。通过将频域中的复杂刚度作为非保守机械损耗或增益的表示,可以调整MM阵列以在EPS操作时实现双向透明度或单向反射。这项分析研究将有助于在机械背景下对EP的理解,以及针对新型应用的微观结构介质的设计。
Exceptional points (EPs) are complex singularities of parametric linear operators where two or more eigenvalues and eigenvectors coalesce. EPs are attracting increasing interest in mechanical metamaterials due to their strong potentials for wave filtering, cloaking, and sensing applications. This work studies the band topology and scattering behaviors near EPs, using discrete models of metamaterial (MM) systems. The questions of existence of EPs and their physical manifestations will be addressed with particular focus on symmetry considerations and scattering behavior. Discrete mass-spring models with adjustable parameters are used here to elucidate the EP-related phenomena in a fundamental form. The transfer and scattering matrices are analyzed to provide practical insights on the restrictions associated with reciprocity and fundamental symmetries. By including complex stiffness in frequency domain as a representation of non-conservative mechanical loss or gain, the MM arrays can be tuned to achieve bi-directional transparency or one-way reflection when operating at the EPs. This analytical study will contribute to the understandings of EPs in mechanical context and the design of micro-structured media for novel applications.