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Journal ArticleDOI

Negative mass density and ρ-near-zero quasi-two-dimensional metamaterials: Design and applications

TLDR
In this article, the design and the characterization of artificial structures made of periodical distributions of structured cylindrical scatterers embedded in a 2D waveguide is described. But the analysis is focused on the frequencies where they behave like materials with negative density or density near zero (DNZ).
Abstract
We report the design and the characterization of artificial structures made of periodical distributions of structured cylindrical scatterers embedded in a two-dimensional (2D) waveguide. For certain values of their geometrical parameters they show simultaneously negative effective bulk modulus and negative effective mass density. Here our analysis is focused on the frequencies where they behave like materials with negative density or density near zero (DNZ). The scattering units consist of a rigid cylindrical core surrounded by an anisotropic shell divided in angular sectors. The units are embedded in a 2D waveguide whose height is smaller than the length of the cylinders, which makes the structure quasi-2D. We have obtained the dispersion relation of the surface acoustic waves excited at frequencies with negative effective density. Also, we report phenomena associated with their DNZ behavior, such as tunneling through narrow channels, control of the radiation field, perfect transmission through sharp corners, and power splitting. Preliminary experiments performed on samples with millimeter-scale dimensions demonstrated their single-negative behavior, with the main drawback being the strong losses measured at the frequencies where the negative behavior is observed.

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Journal ArticleDOI

Controlling sound with acoustic metamaterials

TL;DR: In this article, a review of the design and properties of active acoustic metamaterials can be found, as well as an overview of future directions in the field of sound manipulation.
Journal ArticleDOI

Near-zero refractive index photonics

TL;DR: In this paper, the underlying principles and unique optical applications of structures exhibiting near-zero dielectric permittivity and/or magnetic permeability are reviewed, and the timely relevance to nonlinear, non-reciprocal and non-local effects is highlighted.
Journal ArticleDOI

Tunable and Active Phononic Crystals and Metamaterials

TL;DR: In this article, a survey of tunable and active phononic crystals and metamaterials is presented, including bandgap and bandgap engineering, anomalous behaviors of wave propagation, as well as tunable manipulation of waves based on different regulation mechanisms: tunable mechanical reconfiguration and materials with multifield coupling.
Journal ArticleDOI

Breaking the barriers: advances in acoustic functional materials

TL;DR: In this article, the authors present a review of recent developments in the field of acoustic metamaterials, including zero/negative refraction, subwavelength imaging, sound cloaking, total sound absorption, metasurface and phase engineering, Dirac physics and topology-inspired acoustic engineering, non-Hermitian parity-time synthetic active active metammaterials, and one-way propagation of sound waves.
Journal ArticleDOI

Systematic design and realization of double-negative acoustic metamaterials by topology optimization

TL;DR: In this paper, a unified topology optimization framework was developed for broadband double-negative acoustic metamaterials with different microstructure symmetries, minimal structural feature sizes and dispersion extents of effective parameters.
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