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二维胶体晶体中的多波段超声滤波:粘附、共振和周期性

Multiband Hypersound Filtering in Two-Dimensional Colloidal Crystals: Adhesion, Resonances, and Periodicity.

作者信息

Graczykowski Bartlomiej, Vogel Nicolas, Bley Karina, Butt Hans-Jürgen, Fytas George

机构信息

Faculty of Physics, Adam Mickiewicz University, Uniwersytetu Poznanskiego 2, 61-614 Poznan, Poland.

Max Planck Institute for Polymer Research, Ackermannweg 10, 55128 Mainz, Germany.

出版信息

Nano Lett. 2020 Mar 11;20(3):1883-1889. doi: 10.1021/acs.nanolett.9b05101. Epub 2020 Feb 7.

Abstract

The hypersonic phonon propagation in large-area two-dimensional colloidal crystals is probed by spontaneous micro Brillouin light scattering. The dispersion relation of thermally populated Lamb waves reveals multiband filtering due to three distinct types of acoustic band gaps. We find Bragg gaps accompanied by two types of hybridization gaps in both sub- and superwavelength regimes resulting from contact-based resonances and nanoparticle eigenmodes, respectively. The operating GHz frequencies can be tuned by particle size and depend on the adhesion at the contact interfaces. The experimental dispersion relations are well represented by a finite element method model enabling identification of observed modes. The presented approach also allows for contactless study of the contact stiffness of submicrometer particles, which reveals size effect deviating from macroscopic predictions.

摘要

通过自发微布里渊光散射探测大面积二维胶体晶体中的高超声速声子传播。热激发兰姆波的色散关系揭示了由于三种不同类型的声学带隙导致的多带滤波。我们发现在亚波长和超波长范围内,分别由基于接触的共振和纳米颗粒本征模产生的布拉格间隙伴随着两种类型的杂化间隙。工作GHz频率可通过颗粒尺寸进行调节,并取决于接触界面处的附着力。实验色散关系由有限元方法模型很好地表示,从而能够识别观察到的模式。所提出的方法还允许对亚微米颗粒的接触刚度进行非接触式研究,这揭示了与宏观预测不同的尺寸效应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ee0/7068716/34e6b4b5ca61/nl9b05101_0001.jpg

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