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Application de la réfraction négative à l'imagerie acoustique à l'aide de cristaux phononiques bidimensionnels

机译:负折射在二维声子晶体声成像中的应用

摘要

This investigation deals with wave propagation in two dimensional phononic crystals (PC) made of solid scatterers embedded in solid or fluid matrices. After characterizing such composite materials, their application to acoustic imaging is brought to the forth. The ultrasonic techniques used in the experiments allow the complete measurement of the acoustic transmitted fields and the investigations concern frequency bandwidth able to exhibit negative refraction allowing the super-resolution effects. In order to complete the analysis, different theoretical tools are used: Plane Wave Expansion (PWE) and Finite Elements Method (FEM). The first part of this work deals with the realization and characterization of PC to be introduced into acoustic imaging devices (lenses) based on negative refraction. Special attention is given to characteristics such as circular equi-frequency contours, or index and impedance matching. However, during the acoustic wave propagation in a solid PC immersed in water, the presence of different Bloch modes contributing to the transmission of ultrasound is revealed and the index matching was not possible to obtain. Therefore the second part of the manuscript deals with negative refraction and waves focusing through a PC filled with a fluid. After determining the crystal properties, last chapter is devoted to the evaluation of the performances of acoustic imaging systems based on phononic lens.
机译:这项研究涉及在嵌入固体或流体基质中的固体散射体制成的二维声子晶体(PC)中的波传播。在表征了这种复合材料之后,将它们应用于声学成像。实验中使用的超声技术可以对声传输场进行完整的测量,并且研究涉及能够表现出负折射的频率带宽,从而可以实现超分辨率效果。为了完成分析,使用了不同的理论工具:平面波扩展(PWE)和有限元方法(FEM)。这项工作的第一部分涉及基于负折射将PC引入声成像器件(透镜)中的实现和表征。特别注意诸如圆形等频率轮廓或索引和阻抗匹配之类的特性。但是,在声波在浸没在水中的固态PC中传播期间,揭示了有助于超声传输的不同Bloch模式的存在,并且无法获得折射率匹配。因此,手稿的第二部分处理负折射和通过充有流体的PC聚焦的波。在确定晶体特性之后,最后一章专门介绍了基于声子透镜的声成像系统的性能评估。

著录项

  • 作者

    Manga Etoungh Dimitri;

  • 作者单位
  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 fr
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