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首页> 外文期刊>Physical review.B.Condensed matter and materials physics >Self-dual singularity through lasing and antilasing in thin elastic plates
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Self-dual singularity through lasing and antilasing in thin elastic plates

机译:通过在薄的弹性板中激光和抗晒的自身双重奇异性

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摘要

We show here that a coherent perfect absorber and laser (CFAL) enabled by parity-time (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 in thin-elastic piezoelectric plates leads to 4 × 4 transfer matrices, and captures the interplay between propagating and evanescent waves that is translated into PT-symmetry properties 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 perturbation 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 and/or alternatively can be used as a perfect absorber for flexural energy, by tailoring the left and right incident wave amplitude and phase, with evident energy harvesting applications.
机译:我们在这里展示的是一个连贯的完美吸收体和激光(CFAL)能够通过奇偶时间(PT)-symmetry断裂可能被利用来构建弯曲波单色放大设备。第四阶偏微分方程理事弯曲波在薄弹性压电板的引线的传播到4×4个传递函数矩阵,并捕获传播和渐逝被翻译成PT-对称特性具体到弹性板系统的波之间的相互影响。因此,我们证明了使用这种系统CPAL的可能性,并且我们认为使用这种概念非常检测与在表面科学重要结局(纳米振动的成像)和地球物理学(改善地震传感器等速度计)的小规模振动扰动的可能性。该设备还可以使用非常低激磁强度产生有限信号和/或可替换地可以被用作用于弯曲能量一个完美的吸收剂,通过调整左和右入射波的幅度和相位,以明显的能量收集应用。

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  • 来源
    《Physical review.B.Condensed matter and materials physics 》 |2021年第13期| 134101.1-134101.10| 共10页
  • 作者单位

    Computer Electrical and Mathematical Science and Engineering (CEMSE) Division King Abdullah University of Science and Technology (KAUST) Thuwal 23955-6900 Saudi Arabia;

    Department of Electrical and Computer Engineering University of Illinois at Chicago Chicago Illinois 60607 USA;

    UMI 2004 Abraham de Moivre-CNRS Imperial College London London SW7 2AZ United Kingdom;

    Computer Electrical and Mathematical Science and Engineering (CEMSE) Division King Abdullah University of Science and Technology (KAUST) Thuwal 23955-6900 Saudi Arabia;

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