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      Multi-cell Active Acoustic Metamaterial with Programmable Bulk Modulus

      1 , 2
      Journal of Intelligent Material Systems and Structures
      SAGE Publications

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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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            One path to acoustic cloaking

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              Metamaterial with simultaneously negative bulk modulus and mass density.

              We report a metamaterial which simultaneously possesses a negative bulk modulus and mass density. This metamaterial is a zinc blende structure consisting of one fcc array of bubble-contained-water spheres (BWSs) and another relatively shifted fcc array of rubber-coated-gold spheres (RGSs) in epoxy matrix. The negative bulk modulus and mass density are simultaneously derived from the coexistent monopolar resonances from the embedded BWSs and dipolar resonances from the embedded RGSs. The Poisson ratio of the metamaterial also turns negative near the resonance frequency.
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                Author and article information

                Journal
                Journal of Intelligent Material Systems and Structures
                Journal of Intelligent Material Systems and Structures
                SAGE Publications
                1045-389X
                1530-8138
                January 12 2010
                March 2010
                January 12 2010
                March 2010
                : 21
                : 5
                : 541-556
                Affiliations
                [1 ]Design and Production Engineering Department, Ain Shams University, Cairo, Egypt
                [2 ]Mechanical Engineering Department, University of Maryland, College Park, MD, USA,
                Article
                10.1177/1045389X09359434
                2056e173-4c73-4253-8f3b-4838a82200a0
                © 2010

                http://journals.sagepub.com/page/policies/text-and-data-mining-license

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