论文标题

通过特殊点在薄弹性板中的CPA lasing

CPA-Lasing in Thin-Elastic Plates via Exceptional Points

论文作者

Farhat, M., Chen, P. Y., Guenneau, S., Wu, Y.

论文摘要

我们在这里介绍如何通过平等时间($ \ Mathcal {pt} $)启用连贯的完美吸收激光器(CPAL) - 可以利用对称性破坏来构建单色放大设备以构建弯曲波。控制弯曲波传播的第四阶部分微分方程导致四到四个转移矩阵,这导致了$ \ Mathcal {pt} $ - 特定于弹性板系统的对称性的物理性质。因此,我们证明了将CPAL用于此类系统的可能性,我们认为使用此概念来检测具有表面科学(纳米振动的成像)和地球物理(改善诸如速度计之类的地震传感器)的重要结果(纳米振动的成像)的可能性极小的振动扰动。该设备还可以使用非常低的令人兴奋的强度生成有限信号。该系统可以通过为左右的入射波量身定制能源收集应用,将系统用作弯曲能量的理想吸收器。

We present here how a coherent perfect absorber-laser (CPAL) enabled by parity-time ($\mathcal{PT}$)-symmetry breaking may be exploited to build monochromatic amplifying devices for flexural waves. The fourth order partial differential equation governing the propagation of flexural waves leads to four by four transfer matrices, and this results in physical properties of the $\mathcal{PT}$-symmetry specific to elastic plate systems. We thus demonstrate the possibility of using CPAL for such systems and we argue the possibility of using this concept to detect extremely small-scale vibration perturbations with important outcomes in surface science (imaging of nanometer vibration) and geophysics (improving seismic sensors like velocimeters). The device can also generate finite signals using very low exciting intensities. The system can alternatively be used as a perfect absorber for flexural energy by tailoring the left and right incident wave for energy harvesting applications.

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