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      Magnetoactive Acoustic Metamaterials

      1 , 2 , 3 , 1
      Advanced Materials
      Wiley

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          Most cited references54

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          Locally resonant sonic materials

          Liu, Zhang, Mao (2000)
          We have fabricated sonic crystals, based on the idea of localized resonant structures, that exhibit spectral gaps with a lattice constant two orders of magnitude smaller than the relevant wavelength. Disordered composites made from such localized resonant structures behave as a material with effective negative elastic constants and a total wave reflector within certain tunable sonic frequency ranges. A 2-centimeter slab of this composite material is shown to break the conventional mass-density law of sound transmission by one or more orders of magnitude at 400 hertz.
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            Ultrasonic metamaterials with negative modulus.

            The emergence of artificially designed subwavelength electromagnetic materials, denoted metamaterials, has significantly broadened the range of material responses found in nature. However, the acoustic analogue to electromagnetic metamaterials has, so far, not been investigated. We report a new class of ultrasonic metamaterials consisting of an array of subwavelength Helmholtz resonators with designed acoustic inductance and capacitance. These materials have an effective dynamic modulus with negative values near the resonance frequency. As a result, these ultrasonic metamaterials can convey acoustic waves with a group velocity antiparallel to phase velocity, as observed experimentally. On the basis of homogenized-media theory, we calculated the dispersion and transmission, which agrees well with experiments near 30 kHz. As the negative dynamic modulus leads to a richness of surface states with very large wavevectors, this new class of acoustic metamaterials may offer interesting applications, such as acoustic negative refraction and superlensing below the diffraction limit.
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              Controlling sound with acoustic metamaterials

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                Author and article information

                Journal
                Advanced Materials
                Adv. Mater.
                Wiley
                09359648
                May 2018
                May 2018
                April 11 2018
                : 30
                : 21
                : 1706348
                Affiliations
                [1 ]Sonny Astani Department of Civil and Environmental Engineering; University of Southern California; Los Angeles CA 90089 USA
                [2 ]Department of Mechanical Engineering; Massachusetts Institute of Technology; Cambridge MA 02139 USA
                [3 ]Department of Mechanical and Aerospace Engineering; University of Missouri; Columbia MO 65211 USA
                Article
                10.1002/adma.201706348
                29638017
                21870d91-3766-42ad-b279-f3979aa7755c
                © 2018

                http://doi.wiley.com/10.1002/tdm_license_1.1

                http://onlinelibrary.wiley.com/termsAndConditions#am

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