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Titlebook: Nonlinear, Tunable and Active Metamaterials; Ilya V. Shadrivov,Mikhail Lapine,Yuri S. Kivshar Book 2015 Springer International Publishing

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書目名稱Nonlinear, Tunable and Active Metamaterials
編輯Ilya V. Shadrivov,Mikhail Lapine,Yuri S. Kivshar
視頻videohttp://file.papertrans.cn/668/667783/667783.mp4
概述Offers a first review of the progress in the emerging field of tunable and nonlinear metamaterials.Covers electromagnetic metamaterials, ranging from microwaves and THz, to optics.Presents both concep
叢書名稱Springer Series in Materials Science
圖書封面Titlebook: Nonlinear, Tunable and Active Metamaterials;  Ilya V. Shadrivov,Mikhail Lapine,Yuri S. Kivshar Book 2015 Springer International Publishing
描述Metamaterials, artificial electromagnetic media achieved by structuring on the subwave-length-scale were initially suggested for the negative index and superlensing. They became a paradigm for engineering electromagnetic space and controlling propagation of waves. The research agenda is now shifting on achieving tuneable, switchable, nonlinear and sensing functionalities. The time has come to talk about the emerging research field of metadevices employing active and tunable metamaterials with unique functionalities achieved by structuring of functional matter on the subwave-length scale. This book presents the first systematic and comprehensive summary of the reviews written by the pioneers and top-class experts in the field of metamaterials. It addresses many grand challenges of the cutting edge research for creating smaller and more efficient photonic structures and devices.
出版日期Book 2015
關鍵詞Artificial Materials; Composite Structures; Left-handed Metamaterials; Nonlinear Metamaterials; Nonlinea
版次1
doihttps://doi.org/10.1007/978-3-319-08386-5
isbn_softcover978-3-319-37500-7
isbn_ebook978-3-319-08386-5Series ISSN 0933-033X Series E-ISSN 2196-2812
issn_series 0933-033X
copyrightSpringer International Publishing Switzerland 2015
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Parametric Amplification of Magneto-Inductive Waves, a single non-linear reactive component, a varactor diode. Here its application to the amplification of magneto-inductive (MI) waves is demonstrated. MI waves are slow waves that propagate in linear chains of magnetically coupled L-C resonators known as MI waveguides. Such waveguides can be formed i
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Optimization Strategies for Second-Order Nonlinear Metamaterials,ls consist of arrays of metal nanoparticles, where the plasmonic resonances of individual particles depend on the size, shape, and dielectric environment of the particles. The resonances are further influenced by the coupling of the particles through the array. We first show that the second-order re
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Nonlinear Optics with Backward Waves,es enable coherent energy exchange between ordinary and backward electromagnetic waves, which allows huge increase of frequency-conversion efficiency at second harmonic generation, three-wave mixing and optical parametric amplification. Striking contrasts with properties of the counterparts in ordin
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Metamaterials Tunable with Liquid Crystals,uning strategies employing temperature, external voltage, magnetic field, and power tunability of the parameters of liquid crystals. After infiltration, a hybrid metamaterial composite possesses tunable electromagnetic properties, which can be efficiently controlled by external fields and electromag
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