Nonlinear, tunable and active metama...
Kivshar, Yuri S.

 

  • Nonlinear, tunable and active metamaterials[electronic resource] /
  • 紀錄類型: 書目-語言資料,印刷品 : Monograph/item
    杜威分類號: 620.118
    書名/作者: Nonlinear, tunable and active metamaterials/ edited by Ilya V. Shadrivov, Mikhail Lapine, Yuri S. Kivshar.
    其他作者: Shadrivov, Ilya V.
    出版者: Cham : : Springer International Publishing :, 2015.
    面頁冊數: xxii, 324 p. : : ill. (some col.), digital ;; 24 cm.
    Contained By: Springer eBooks
    標題: Metamaterials.
    標題: Physics.
    標題: Semiconductors.
    標題: Optical and Electronic Materials.
    標題: Structural Materials.
    標題: Applied and Technical Physics.
    ISBN: 9783319083865 (electronic bk.)
    ISBN: 9783319083858 (paper)
    內容註: Nonlinear Metamaterials -- Quantum Metamaterials -- Nonlinear and Tunable Left Handed Transmission Line Metamaterials -- Nonlinear Optics with Backward Waves -- Tailoring Nonlinear Interactions in Metamaterials -- Intrinsic Localization, Nonlinear Transmission and Multistability in SQUID based Metamaterials- Nonlinear Forward Backward Waves in Artificial Materials -- Optimization Strategies for Secondorder Nonlinear Metamaterials -- Parametric Amplification of Magneto-inductive Waves -- Electro optical Tuning of the Electromagnetic Response of Metamaterials -- Micromachined Tunable Metamaterials.
    摘要、提要註: 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.
    電子資源: http://dx.doi.org/10.1007/978-3-319-08386-5
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