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The study of band gap engineering for phononic crystals and gap structures in phononic quasicrystals.

机译:声子晶体的带隙工程和声子准晶体的能隙结构研究。

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摘要

Phononic crystals and quasicrystals are solid-solid, fluid-solid or fluid-fluid composites with periodic or quasiperiodic long-range order, respectively. They are of interest not only because of the profound effects of their periodic or quasiperiodic structure on wave propagation (e.g. the existence of elastic or acoustic band gaps), but also because of potential applications like sound filters, transducer design and acoustic mirrors, etc. In this thesis, I will present some research progress in the study of both phononic crystals and quasicrystals.; For phononic crystals, we have proposed a simple, systematic and efficient method to engineer elastic (acoustic) band gaps. A gap can be enhanced or created by altering the microstructure according to the field-energy distributions of the Bloch states at the band edges as well as their derivatives. Due to the structure of the acoustic wave equation, the engineering of acoustic band gaps is much more efficient than that of photonic band gaps. For elastic waves, a large absolute band gap can be enhanced or created by inserting air inclusions in a two-component elastic phononic crystal or quasicrystal with small density contrast and filling fraction. The positions of the insertion are chosen to suppress the shear potential energy of the acoustic branches and lower their frequencies. The validity of the proposed methods is supported by multiple-scattering calculations in various two-dimensional systems, such as steel cylinders in air, water cylinders in mercury and aluminum cylinders in epoxy. Our methods make the acoustic band gap "designable" and the realization of a light and effective sonic insulator possible.; The sonic band-gap structures of a 12-fold symmetric quasicrystal consisting of rigid cylinders in air are investigated by using the multiple scattering method. Large full gaps are found owing to its high symmetry. However, the gap structure evolves with the sample size. By using the SMCG method, we have observed a self-similar like behavior of states emerging inside original gaps and gaps emerging inside original bands when the sample size is increased. The long-range order has been proved important for the formation of gaps at low frequencies. We have also studied the properties of wave functions in large samples (up to 33919 cylinders). Various types of wave functions have been seen, including extended state, self-similar state with a power-law decay and confined state.
机译:声子晶体和准晶体分别是固-固,液-固或液-液复合材料,具有周期性或准周期性的长程顺序。它们之所以引起人们的关注,不仅是因为它们的周期性或准周期性结构对波传播产生了深远的影响(例如,存在弹性或声带隙),而且还因为诸如滤音器,换能器设计和声镜等潜在应用。本文将介绍声子晶体和准晶体的研究进展。对于声子晶体,我们提出了一种简单,系统且有效的方法来设计弹性(声学)带隙。可以通过根据能带边缘的布洛赫态的场能分布及其导数改变微观结构来增强或创建间隙。由于声波方程的结构,声带隙的工程效率比光子带隙的工程效率高得多。对于弹性波,可以通过将空气夹杂物插入密度较低,填充率较小的两组分弹性声子晶体或准晶体中来增强或创建较大的绝对带隙。选择插入的位置以抑制声分支的剪切势能并降低其频率。各种二维系统中的多次散射计算,例如空气中的钢瓶,汞中的水瓶和环氧树脂中的铝瓶,都证明了所提出方法的有效性。我们的方法使声带隙“可设计”,并可能实现轻便有效的声绝缘体。利用多重散射法研究了由空气中的刚性圆柱体组成的12倍对称准晶体的声带隙结构。由于其高对称性,发现了较大的完整间隙。但是,缺口结构随样本大小而变化。通过使用SMCG方法,我们观察到当样本量增加时,原始间隙内出现的状态和原始带内出现的状态之间的自相似行为。事实证明,长距离有序对于低频形成缺口很重要。我们还研究了大样本(最多33919个圆柱体)中的波动函数的特性。已经看到了各种类型的波函数,包括扩展状态,具有幂律衰减的自相似状态和受限状态。

著录项

  • 作者

    Lai, Yun.;

  • 作者单位

    Hong Kong University of Science and Technology (People's Republic of China).;

  • 授予单位 Hong Kong University of Science and Technology (People's Republic of China).;
  • 学科 Physics Condensed Matter.; Physics Acoustics.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 141 p.
  • 总页数 141
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 声学;
  • 关键词

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