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Functional metamaterials and metadevices

Author: Xingcun Colin Tong
Publisher: Cham, Switzerland : Springer, [2018] ©2018
Series: Springer series in materials science, v. 262.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
To meet the demands of students, scientists and engineers for a systematic reference source, this book introduces, comprehensively and in a single voice, research and development progress in emerging metamaterials and derived functional metadevices. Coverage includes electromagnetic, optical, acoustic, thermal, and mechanical metamaterials and related metadevices. Metamaterials are artificially engineered composites  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Tong, Xingcun Colin.
Functional metamaterials and metadevices.
Cham, Switzerland : Springer, [2018]
(OCoLC)994639577
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Xingcun Colin Tong
ISBN: 9783319660448 3319660446
OCLC Number: 1004664225
Description: 1 online resource (xviii, 277 pages) : illustrations (some color).
Contents: Preface; Abbreviations; Contents; Chapter 1: Concepts From Metamaterials to Functional Metadevices; 1.1 Rationale for Metamaterials Exploration; 1.2 Classification of Metamaterials; 1.3 Evolution of Metamaterials; 1.4 Emerging Functional Metadevices; 1.4.1 Reconfigurable and Tunable Metadevices; 1.4.2 Electro-Optical Metadevices; 1.4.3 Liquid-Crystal Metadevices; 1.4.4 Phase-Change Metadevices; 1.4.5 Superconducting Metadevices; 1.4.6 Ultrafast Photonic Metadevices; 1.4.7 Nonlinear Metadevices with Varactors; 1.4.8 Metadevices Driven by Electromagnetic Forces; 1.4.9 Acoustic Metadevice. 2.4.5 Material TuningReferences; Chapter 3: Electromagnetic Metamaterials and Metadevices; 3.1 Fundamental Theory of Electromagnetic Metamaterials; 3.2 Single-Negative Metamaterials; 3.2.1 Metamaterials with Negative Effective Permittivity in the Microwave Regime; 3.2.2 Metamaterials with Negative Effective Permeability in the Microwave Regime; 3.3 Double-Negative Metamaterials; 3.4 Zero-Index Metamaterials; 3.5 Electromagnetic Bandgap Metamaterials; 3.5.1 Types of EBG Structures; 3.5.2 Numerical Modeling of EBG; 3.5.3 EBG Applications; 3.6 Bi-isotropic and Bi-anisotropic Metamaterials. 3.7 Microwave Metamaterial-Inspired MetadevicesReferences; Chapter 4: Terahertz Metamaterials and Metadevices; 4.1 Introduction; 4.2 Passive-Type Terahertz Metamaterials; 4.2.1 Terahertz Metamaterials with Electric Responses; 4.2.2 Terahertz Metamaterials with Magnetic Responses; 4.2.3 Terahertz Metamaterials with Negative Refractive Indices; 4.2.4 Broadband Terahertz Metamaterials; 4.3 Active-Type Terahertz Metamaterials; 4.3.1 Electrically Tunable THz Metamaterials; 4.3.2 Optically Tunable THz Metamaterials; 4.3.3 Mechanically Tunable THz Metamaterials; 4.4 Flexible THz Metamaterials.
Series Title: Springer series in materials science, v. 262.
Responsibility: Xingcun Colin Tong.

Abstract:

To meet the demands of students, scientists and engineers for a systematic reference source, this book introduces, comprehensively and in a single voice, research and development progress in emerging  Read more...

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