Bianisotropic metasurfaces for scattering-free manipulation of acoustic wavefronts
arXiv:1711.09840 · doi:10.1038/s41467-018-03778-9
Abstract
Recent advances in gradient metasurfaces have shown that only by locally controlling the bianisotropic response of the constituent cells can one ensure full control of refraction, i.e., arbitrarily modify the direction of the incident waves without producing scattering into unwanted directions. In this work, we propose and experimentally verify the use of a new acoustic cell architecture that provides enough degrees of freedom to fully control the bianisotropic response and minimizes the implementation losses produced by resonant elements. The versatility of the approach is shown through the design of three different anomalous refractive metasurfaces capable of redirecting a normally incident plane wave to 60, 70 and 80 degrees on transmission. The effciency of the bianisotropic designs is over 90%, much higher than the corresponding designs based on the conventional generalized Snells law (81%, 58%, and 35%). The proposed strategy opens a new way of designing practical and highly effcient bianisotropic metasurfaces for different functionalities, enabling nearly ideal control over the acoustic energy flow through thin metasurfaces.
10 pages, 5 figures, a supplementary material
References in corpus (10)
- A review of metasurfaces: physics and applications
- Wavefront Modulation and Subwavelength Diffractive Acoustics with an Acoustic Metasurface
- Perfect control of reflection and refraction using spatially dispersive metasurfaces
- Experimental realizations of full control of reflected waves with subwavelength acoustic metasurfaces
- Ultra-thin metamaterial for perfect and omnidirectional sound absorption
- Synthesis of passive lossless metasurfaces using auxiliary fields for reflectionless beam splitting and perfect reflection
- Metamaterial bricks and quantization of meta-surfaces
- Acoustic metasurfaces for scattering-free anomalous reflection and refraction
- Quasi-perfect absorption by sub-wavelength acoustic panels in transmission using accumulation of resonances due to slow sound
- Refracting Metasurfaces without Spurious Diffraction
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