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Novel acoustic flat focusing based on the asymmetric response in parity-time-symmetric phononic crystals

机译:基于奇偶时间对称声子晶体中非对称响应的新型声平面聚焦

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摘要

We present a two-dimensional (2D) parity-time-symmetric (PT-symmetry) phononic crystals (PCs) with balanced gain and loss medium. Using the super cell method of rectangular lattice, we exhibit the thresholdless spontaneous PT-symmetry breaking in the band structure. The numerical results show that the asymmetric scattering properties obviously occur in a non-Hermitian system. At two specific incident frequencies, unidirectional reflectionless and perfect transmission behaviors exist individually in opposite directions, which are accompanied by a phase transition of π. Based on the generalized Snell’s law, combining such a PT-symmetric medium, we design a novel metamaterial crystal for PT-symmetric acoustic flat focusing. Its focus frequency can also be modulated by the gain/loss parameter. The novel flat focusing based on the PT-symmetry that we propose opens a new door for high-dimensional applications of non-Hermitian metamaterials in acoustic wave manipulation.
机译:我们提出了具有平衡增益和损耗介质的二维(2D)奇偶时间对称(PT-对称)声子晶体(PC)。使用矩形格的超级单元法,我们展示了带结构中无阈值自发PT对称性的破裂。数值结果表明,在非厄米系统中,不对称散射特性明显发生。在两个特定的入射频率下,单向无反射和完美的传输行为分别存在于相反的方向,并伴有π的相变。基于广义斯涅尔定律,结合这样的PT对称介质,我们设计了一种新颖的超材料晶体,用于PT对称声平面聚焦。它的聚焦频率也可以通过增益/损耗参数进行调制。我们提出的基于PT对称性的新型平面聚焦技术为非赫米特超材料在声波处理中的高尺寸应用打开了一扇新门。

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