Acoustic metasurfaces
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Ying Wu | Yong Li | B. Liang | Jian-chun Cheng | B. Assouar | Yun Jing
[1] Qiang Cheng,et al. Acoustic planar surface retroreflector , 2018, Physical Review Materials.
[2] B. Liang,et al. Twisted Acoustics: Metasurface‐Enabled Multiplexing and Demultiplexing , 2018, Advanced materials.
[3] Bin Liang,et al. Fine manipulation of sound via lossy metamaterials with independent and arbitrary reflection amplitude and phase , 2018, Nature Communications.
[4] S. Anderson,et al. Horn-like space-coiling metamaterials toward simultaneous phase and amplitude modulation , 2018, Nature Communications.
[5] Yong Li,et al. Investigation of acoustic metasurfaces with constituent material properties considered , 2018 .
[6] Jie Zhu,et al. Inherent losses induced absorptive acoustic rainbow trapping with a gradient metasurface , 2018 .
[7] P. Sheng,et al. Perspective: Acoustic metamaterials in transition , 2018 .
[8] Ye Tian,et al. Acoustic analog computing based on a reflective metasurface with decoupled modulation of phase and amplitude , 2018 .
[9] R. Fleury,et al. Toward wideband steerable acoustic metasurfaces with arrays of active electroacoustic resonators , 2018 .
[10] C. Han,et al. Metasurface for Water-to-Air Sound Transmission. , 2018, Physical review letters.
[11] Yi Fang,et al. Analytical Modelling for Predicting the Sound Field of Planar Acoustic metasurface , 2018 .
[12] Ying Wu,et al. Ultrathin metasurface with high absorptance for waterborne sound , 2018 .
[13] B. Assouar,et al. Tunable elastic Parity-Time symmetric structure based on the shunted piezoelectric materials , 2018, 1801.04114.
[14] S. Tretyakov,et al. Systematic design and experimental demonstration of bianisotropic metasurfaces for scattering-free manipulation of acoustic wavefronts , 2017, Nature Communications.
[15] Shuibao Qi,et al. Acoustic energy harvesting based on multilateral metasurfaces , 2017 .
[16] K. Bertoldi,et al. Flexible mechanical metamaterials , 2017 .
[17] Yan Pennec,et al. Pillar-type acoustic metasurface , 2017 .
[18] Yong Li,et al. Broadband acoustic skin cloak based on spiral metasurfaces , 2017, Scientific Reports.
[19] Xiaozhou Liu,et al. Manipulation of acoustic wavefront by gradient metasurface based on Helmholtz Resonators , 2017, Scientific Reports.
[20] Bruce W. Drinkwater,et al. Dynamics of levitated objects in acoustic vortex fields , 2017, Scientific Reports.
[21] Victor M. García-Chocano,et al. Viscothermal Losses in Double-Negative Acoustic Metamaterials , 2017 .
[22] S. Cummer,et al. Tunable Asymmetric Transmission via Lossy Acoustic Metasurfaces. , 2017, Physical review letters.
[23] Vicent Romero-García,et al. Metadiffusers: Deep-subwavelength sound diffusers , 2017, Scientific Reports.
[24] Ping Sheng,et al. Sound Absorption Structures: From Porous Media to Acoustic Metamaterials , 2017 .
[25] Xiaodong Xu,et al. All-angle Negative Reflection with An Ultrathin Acoustic Gradient Metasurface: Floquet-Bloch Modes Perspective and Experimental Verification , 2017, Scientific Reports.
[26] Y. Wang,et al. High-speed acoustic communication by multiplexing orbital angular momentum , 2017, Proceedings of the National Academy of Sciences.
[27] Yi S. Ding,et al. A broadband acoustic metamaterial with impedance matching layer of gradient index , 2017 .
[28] M. Haberman,et al. Experimental evidence of Willis coupling in a one-dimensional effective material element , 2017, Nature Communications.
[29] J. Groby,et al. Perfect and broadband acoustic absorption in deep sub-wavelength structures for the reflection and transmission problems , 2017 .
[30] Yong Li,et al. Acoustic Focusing and Energy Confinement Based on Multilateral Metasurfaces , 2017 .
[31] Ye Tian,et al. Acoustic holography based on composite metasurface with decoupled modulation of phase and amplitude , 2017 .
[32] Y. Wang,et al. A thin and conformal metasurface for illusion acoustics of rapidly changing profiles , 2017 .
[33] Yong Li,et al. Thermoviscous effects on sound transmission through a metasurface of hybrid resonances. , 2017, The Journal of the Acoustical Society of America.
[34] Jianguo Tian,et al. Multiband Asymmetric Transmission of Airborne Sound by Coded Metasurfaces , 2017 .
[35] Zhengyou Liu,et al. Coding Acoustic Metasurfaces , 2017, Advanced materials.
[36] B. Liang,et al. Ultrathin Acoustic Metasurface-Based Schroeder Diffuser , 2017, 1701.08908.
[37] Hervé Lissek,et al. Generation of acoustic helical wavefronts using metasurfaces , 2017 .
[38] Sriram Subramanian,et al. Metamaterial bricks and quantization of meta-surfaces , 2016, Nature Communications.
[39] Wenyu Zhao,et al. Apparent Negative Reflection with the Gradient Acoustic Metasurface by Integrating Supercell Periodicity into the Generalized Law of Reflection , 2016, Scientific Reports.
[40] Wenyu Zhao,et al. Full-angle negative reflection realized by a gradient acoustic metasurface , 2016 .
[41] Andrea Alù,et al. Parity-Time Symmetric Nonlocal Metasurfaces: All-Angle Negative Refraction and Volumetric Imaging , 2016 .
[42] Yadong Xu,et al. Planar gradient metamaterials , 2016 .
[43] Xiaoyu Zheng,et al. Multiscale metallic metamaterials. , 2016, Nature materials.
[44] Ping Sheng,et al. Optimal sound-absorbing structures , 2016, 1609.09561.
[45] Peer Fischer,et al. Holograms for acoustics , 2016, Nature.
[46] Steven A. Cummer,et al. Acoustic Holographic Rendering with Two-dimensional Metamaterial-based Passive Phased Array , 2016, Scientific Reports.
[47] Bin Liang,et al. Convert Acoustic Resonances to Orbital Angular Momentum. , 2016, Physical review letters.
[48] Chen Shen,et al. Membrane- and plate-type acoustic metamaterials. , 2016, The Journal of the Acoustical Society of America.
[49] Yong Li,et al. Acoustic energy harvesting based on a planar acoustic metamaterial , 2016 .
[50] Vincent Pagneux,et al. Ultra-thin metamaterial for perfect and omnidirectional sound absorption , 2016, 1606.07776.
[51] Jiuyang Lu,et al. Making sound vortices by metasurfaces , 2016, 1606.05041.
[52] Bin Liang,et al. Acoustic one-way metasurfaces: Asymmetric Phase Modulation of Sound by Subwavelength Layer , 2016, Scientific reports.
[53] Steven A. Cummer,et al. Asymmetric acoustic transmission through near-zero-index and gradient-index metasurfaces , 2016 .
[54] Cheng-Wei Qiu,et al. Broadband and stable acoustic vortex emitter with multi-arm coiling slits , 2016 .
[55] Badreddine Assouar,et al. Acoustic metamaterials for sound mitigation , 2016 .
[56] Shuibao Qi,et al. Theory of metascreen-based acoustic passive phased array , 2016 .
[57] Christina J. Naify,et al. Generation of topologically diverse acoustic vortex beams using a compact metamaterial aperture , 2016, 1604.08447.
[58] A. Alú,et al. Controlling sound with acoustic metamaterials , 2016 .
[59] Yong Li,et al. Acoustic metasurface-based perfect absorber with deep subwavelength thickness , 2016 .
[60] P. Sheng,et al. Acoustic metamaterials: From local resonances to broad horizons , 2016, Science Advances.
[61] Ying Wu,et al. High transmission acoustic focusing by impedance-matched acoustic meta-surfaces , 2016 .
[62] Yong Li,et al. Three-dimensional collimated self-accelerating beam through acoustic metascreen , 2015, Scientific Reports.
[63] Y. Cheng,et al. Ultra-sparse metasurface for high reflection of low-frequency sound based on artificial Mie resonances. , 2015, Nature materials.
[64] Bin Liang,et al. Acoustic one-way open tunnel by using metasurface , 2015 .
[65] Yong Li,et al. Metascreen-Based Acoustic Passive Phased Array , 2015 .
[66] S. Cummer,et al. Broadband Acoustic Hyperbolic Metamaterial. , 2015, Physical review letters.
[67] J. Sambles,et al. Boundary-Layer Effects on Acoustic Transmission Through Narrow Slit Cavities. , 2015, Physical review letters.
[68] Bin Liang,et al. Dispersionless Manipulation of Reflected Acoustic Wavefront by Subwavelength Corrugated Surface , 2015, Scientific Reports.
[69] Jie Zhang,et al. Observation of orbital angular momentum transfer from bessel-shaped acoustic vortices to diphasic liquid-microparticle mixtures. , 2015, Physical review letters.
[70] Bin Liang,et al. Ultra-broadband absorption by acoustic metamaterials , 2014 .
[71] Ying Wu,et al. Controllable transmission and total reflection through an impedance-matched acoustic metasurface , 2014 .
[72] M. Badreddine Assouar,et al. General analytical approach for sound transmission loss analysis through a thick metamaterial plate , 2014 .
[73] Nicholas X. Fang,et al. Anisotropic Complementary Acoustic Metamaterial for Canceling out Aberrating Layers , 2014 .
[74] Bin Liang,et al. Three-dimensional Ultrathin Planar Lenses by Acoustic Metamaterials , 2014, Scientific Reports.
[75] Pai Peng,et al. Flat acoustic lens by acoustic grating with curled slits , 2014 .
[76] Chiara Daraio,et al. Acoustic Fresnel lenses with extraordinary transmission , 2014 .
[77] P. Sheng,et al. Acoustic metasurface with hybrid resonances. , 2014, Nature materials.
[78] Yong Li,et al. Experimental realization of full control of reflected waves with subwavelength acoustic metasurfaces , 2014, 1407.1138.
[79] M. Ruzzene,et al. Dynamics of Phononic Materials and Structures: Historical Origins, Recent Progress, and Future Outlook , 2014 .
[80] Huanyang Chen,et al. Wavefront modulation and subwavelength diffractive acoustics with an acoustic metasurface , 2014, Nature Communications.
[81] Howon Lee,et al. Ultralight, ultrastiff mechanical metamaterials , 2014, Science.
[82] Manzhu Ke,et al. Anomalous refraction of airborne sound through ultrathin metasurfaces , 2014, Scientific Reports.
[83] S. Cummer,et al. Three-dimensional broadband omnidirectional acoustic ground cloak. , 2014, Nature materials.
[84] Steven A Cummer,et al. Non-reciprocal and highly nonlinear active acoustic metamaterials , 2014, Nature Communications.
[85] R. Fleury,et al. Sound Isolation and Giant Linear Nonreciprocity in a Compact Acoustic Circulator , 2014, Science.
[86] Qiaofeng Tan,et al. Three-dimensional optical holography using a plasmonic metasurface , 2013, Nature Communications.
[87] S. Cummer,et al. Tapered labyrinthine acoustic metamaterials for broadband impedance matching , 2013 .
[88] Cheng-Wei Qiu,et al. Redirection of sound waves using acoustic metasurface , 2013 .
[89] Bin Liang,et al. Reflected wavefront manipulation based on ultrathin planar acoustic metasurfaces , 2013, Scientific Reports.
[90] Baowen Li,et al. Manipulating Acoustic Wavefront by Inhomogeneous Impedance and Steerable Extraordinary Reflection , 2013, Scientific Reports.
[91] Yong Li,et al. Extraordinary acoustic transmission through ultrathin acoustic metamaterials by coiling up space , 2013 .
[92] Martin Wegener,et al. Three-dimensional labyrinthine acoustic metamaterials , 2013 .
[93] Yong Li,et al. Unidirectional acoustic transmission through a prism with near-zero refractive index , 2013 .
[94] Steven A. Cummer,et al. Tunable active acoustic metamaterials , 2013 .
[95] S. Bozhevolnyi,et al. Broadband focusing flat mirrors based on plasmonic gradient metasurfaces. , 2013, Nano letters.
[96] C. Chan,et al. Space-coiling metamaterials with double negativity and conical dispersion , 2012, Scientific Reports.
[97] S. Cummer,et al. Measurement of a broadband negative index with space-coiling acoustic metamaterials. , 2012, Physical review letters.
[98] Yong Li,et al. Acoustic focusing by coiling up space , 2012 .
[99] Massimo Ruzzene,et al. Broadband plate-type acoustic metamaterial for low-frequency sound attenuation , 2012 .
[100] P. Sheng,et al. Dark acoustic metamaterials as super absorbers for low-frequency sound , 2012, Nature Communications.
[101] Jensen Li,et al. Extreme acoustic metamaterial by coiling up space. , 2012, Physical review letters.
[102] Yun Jing,et al. Time-reversal transcranial ultrasound beam focusing using a k-space method , 2012, Physics in medicine and biology.
[103] Tsung-Tsong Wu,et al. Experimental evidence of locally resonant sonic band gap in two-dimensional phononic stubbed plates , 2011 .
[104] N. Yu,et al. Light Propagation with Phase Discontinuities: Generalized Laws of Reflection and Refraction , 2011, Science.
[105] Christina J. Naify,et al. Membrane-type metamaterials: Transmission loss of multi-celled arrays , 2011 .
[106] Yong Li,et al. A sonic band gap based on the locally resonant phononic plates with stubs , 2010 .
[107] Ping Sheng,et al. Acoustic metamaterial panels for sound attenuation in the 50–1000 Hz regime , 2010 .
[108] Malcolm J. Crocker,et al. Recent Trends in Porous Sound-Absorbing Materials , 2010 .
[109] Amr M. Baz,et al. The structure of an active acoustic metamaterial with tunable effective density , 2009 .
[110] P. Sheng,et al. Membrane-type acoustic metamaterial with negative dynamic mass. , 2008, Physical review letters.
[111] Yang-Hann Kim,et al. A theoretical model to predict the low-frequency sound absorption of a helmholtz resonator array. , 2006, The Journal of the Acoustical Society of America.
[112] Eric Wai Ming Lee,et al. Sound absorption of a finite flexible micro-perforated panel backed by an air cavity , 2005 .
[113] T. Cox,et al. A profiled structure with improved low frequency absorption , 2001 .
[114] Sheng,et al. Locally resonant sonic materials , 2000, Science.
[115] Trevor J. Cox,et al. Diffusor application in rooms , 2000 .
[116] T. T. Soong,et al. Parametric study and simplified design of tuned mass dampers , 1998 .
[117] Fergus R. Fricke,et al. Theory and applications of quarter-wave resonators: A prelude to their use for attenuating noise entering buildings through ventilation openings , 1998 .
[118] T. Cox. The optimization of profiled diffusers , 1995 .
[119] Takeru Igusa,et al. Vibration Control Using Multiple Tuned Mass Dampers , 1994 .
[120] T. Cox,et al. Prediction and evaluation of the scattering from quadratic residue diffusers , 1994 .
[121] Miceli,et al. Diffraction-free beams. , 1987, Physical review letters.
[122] J. D. Maynard,et al. Nearfield acoustic holography: I. Theory of generalized holography and the development of NAH , 1985 .
[123] R. Lane. Absorption mechanisms for waterborne sound in Alberich anechoic layers , 1981 .
[124] M. Schroeder. Binaural dissimilarity and optimum ceilings for concert halls: More lateral sound diffusion , 1979 .
[125] D Maa,et al. THEORY AND DESIGN OF MICROPERFORATED PANEL SOUND-ABSORBING CONSTRUCTIONS , 1975 .
[126] M. Schroeder. Diffuse sound reflection by maximum−length sequences , 1975 .
[127] U. Ingard. On the Theory and Design of Acoustic Resonators , 1953 .