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Anisotropic Cylindrical Waves in a Square Lattice of Acoustic Waveguides

2026/06/13 by Ioannis Ioannou Sougleridis, Olivier Richoux, Vassos Achilleos +2 · 1 voice
Physics and Astronomy · #nlin.PS #physics.app-ph

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Abstract

We investigate the propagation of cylindrical waves in a square network of acoustic waveguides. We establish, both theoretically and experimentally, the anisotropic dispersion relation governing wave propagation in the network, and demonstrate excellent agreement between experimental measurements and theoretical predictions. Owing to this anisotropic band structure, each propagation direction exhibits distinct dispersive properties. Consequently, the network supports anisotropic cylindrical waves at both low- and high-amplitudes, with waveforms that vary markedly with direction: from nearly dispersionless pulses to Airy-like wave packets in the linear regime, and from sharp shock-like fronts to smooth solitary-like profiles in the nonlinear regime. The theoretical results are further corroborated by numerical simulations based on the two-dimensional Westervelt equation.

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