Institute of Applied Mechanics, National Taiwan University, Taipei, Taiwan.
IEEE Trans Ultrason Ferroelectr Freq Control. 2011 Oct;58(10):2146-61. doi: 10.1109/TUFFC.2011.2064.
In the past two decades, phononic crystals (PCs) which consist of periodically arranged media have attracted considerable interest because of the existence of complete frequency band gaps and maneuverable band structures. Recently, Lamb waves in thin plates with PC structures have started to receive increasing attention for their potential applications in filters, resonators, and waveguides. This paper presents a review of recent works related to phononic plate waves which have recently been published by the authors and coworkers. Theoretical and experimental studies of Lamb waves in 2-D PC plate structures are covered. On the theoretical side, analyses of Lamb waves in 2-D PC plates using the plane wave expansion (PWE) method, finite-difference time-domain (FDTD) method, and finite-element (FE) method are addressed. These methods were applied to study the complete band gaps of Lamb waves, characteristics of the propagating and localized wave modes, and behavior of anomalous refraction, called negative refraction, in the PC plates. The theoretical analyses demonstrated the effects of PC-based negative refraction, lens, waveguides, and resonant cavities. We also discuss the influences of geometrical parameters on the guiding and resonance efficiency and on the frequencies of waveguide and cavity modes. On the experimental side, the design and fabrication of a silicon-based Lamb wave resonator which utilizes PC plates as reflective gratings to form the resonant cavity are discussed. The measured results showed significant improvement of the insertion losses and quality factors of the resonators when the PCs were applied.
在过去的二十年中,由周期性排列的介质组成的声子晶体(PCs)由于存在完全的频带隙和可操纵的带结构而引起了相当大的兴趣。最近,具有 PC 结构的薄板中的兰姆波因其在滤波器、谐振器和波导中的潜在应用而开始受到越来越多的关注。本文综述了作者及其同事最近发表的有关声子板波的最新研究工作。涵盖了二维 PC 板结构中兰姆波的理论和实验研究。在理论方面,使用平面波展开(PWE)方法、有限差分时间域(FDTD)方法和有限元(FE)方法分析了二维 PC 板中的兰姆波。这些方法被应用于研究兰姆波的完全频带隙、传播和局域波模式的特性以及 PC 板中异常折射(称为负折射)的行为。理论分析表明了基于 PC 的负折射、透镜、波导和共振腔的影响。我们还讨论了几何参数对波导和腔模的引导和共振效率以及频率的影响。在实验方面,讨论了利用 PC 板作为反射光栅形成共振腔的硅基兰姆波谐振器的设计和制造。测量结果表明,当应用 PCs 时,谐振器的插入损耗和品质因数得到了显著提高。