Directional Acoustic Bulk Waves in a 2D Phononic Crystal

Author:

Deymier Pierre A.12,Vasseur Jérôme O.3,Runge Keith12ORCID,Muralidharan Krishna12,Khanikaev Alexander245,Alù Andrea246ORCID

Affiliation:

1. Department of Materials Science and Engineering, University of Arizona, Tucson, AZ 85721, USA

2. New Frontiers of Sound Science and Technology Center, The University of Arizona, Tucson, AZ 85721, USA

3. Univ. Lille, CNRS, Centrale Lille, University Polytechnique Hauts-de-France, Junia, UMR 8520 IEMN, F-59000 Lille, France

4. Department of Electrical Engineering, The City College of New York, New York, NY 10031, USA

5. Physics Program, Graduate Center, City University of New York, New York, NY 10016, USA

6. Photonics Initiative, Advanced Science Research Center, City University of New York, New York, NY 10031, USA

Abstract

We used the transfer matrix method to investigate the conditions supporting the existence of directional bulk waves in a two-dimensional (2D) phononic crystal. The 2D crystal was a square lattice of unit cells composed of rectangular subunits constituted of two different isotropic continuous media. We established the conditions on the geometry of the phononic crystal and its constitutive media for the emergence of waves, which, for the same handedness, exhibited a non-zero amplitude in one direction within the crystal’s 2D Brillouin zone and zero amplitude in the opposite direction. Due to time-reversal symmetry, the crystal supported propagation in the reverse direction for the opposite handedness. These features may enable robust directional propagation of bulk acoustic waves and topological acoustic technology.

Funder

US National Science Foundation

Publisher

MDPI AG

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