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ISBN: 9780471669852

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Electromagnetic Metamaterials: Transmission Line Theory and Microwave Applications - copertina rigida, flessible

2005

ISBN: 9780471669852

Hard cover, New., Sewn binding. Cloth over boards. 376 p. Contains: Unspecified, Illustrations, black & white. IEEE Press., Hoboken, NJ, [PU: Wiley-IEEE Press]

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Electromagnetic Metamaterials: Transmission Line Theory and Microwave Applications - copertina rigida, flessible

2005, ISBN: 9780471669852

Wiley-IEEE Press, 2005-11-25. Hardcover. New. New. In shrink wrap. Looks like an interesting title!, Wiley-IEEE Press, 2005-11-25, 6

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Electromagnetic Metamaterials Transmission Line Theory and Microwave Applications - Caloz, Christophe; Itoh, Tatsuo
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Electromagnetic Metamaterials Transmission Line Theory and Microwave Applications - nuovo libro

ISBN: 9780471669852

Electromagnetic Metamaterials Transmission Line Theory and Microwave Applications Hardcover New Books, Wiley-IEEE Press

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Dettagli del libro
Electromagnetic Metamaterials ? Transmission Line Theory and Microwave Applications

Electromagnetic metamaterials-from fundamental physics to advanced engineering applications This book presents an original generalized transmission line approach associated with non-resonant structures that exhibit larger bandwidths, lower loss, and higher design flexibility. It is based on the novel concept of composite right/left-handed (CRLH) transmission line metamaterials (MMs), which has led to the development of novel guided-wave, radiated-wave, and refracted-wave devices and structures. The authors introduced this powerful new concept and are therefore able to offer readers deep insight into the fundamental physics needed to fully grasp the technology. Moreover, they provide a host of practical engineering applications. The book begins with an introductory chapter that places resonant type and transmission line metamaterials in historical perspective. The next six chapters give readers a solid foundation in the fundamentals and practical applications: * Fundamentals of LH MMs describes the fundamental physics and exotic properties of left-handed metamaterials * TL Theory of MMs establishes the foundations of CRLH structures in three progressive steps: ideal transmission line, LC network, and real distributed structure * Two-Dimensional MMs develops both a transmission matrix method and a transmission line method to address the problem of finite-size 2D metamaterials excited by arbitrary sources * Guided-Wave Applications and Radiated-Wave Applications present a number of groundbreaking applications developed by the authors * The Future of MMs sets forth an expert view on future challenges and prospects This engineering approach to metamaterials paves the way for a new generation of microwave and photonic devices and structures. It is recommended for electrical engineers, as well as physicists and optical engineers, with an interest in practical negative refractive index structures and materials.

Informazioni dettagliate del libro - Electromagnetic Metamaterials ? Transmission Line Theory and Microwave Applications


EAN (ISBN-13): 9780471669852
ISBN (ISBN-10): 0471669857
Copertina rigida
Copertina flessibile
Anno di pubblicazione: 2005
Editore: John Wiley & Sons Inc

Libro nella banca dati dal 2014-02-19T15:00:51+01:00 (Zurich)
Pagina di dettaglio ultima modifica in 2023-08-02T23:31:42+02:00 (Zurich)
ISBN/EAN: 0471669857

ISBN - Stili di scrittura alternativi:
0-471-66985-7, 978-0-471-66985-2
Stili di scrittura alternativi e concetti di ricerca simili:
Autore del libro : christophé, christophe
Titolo del libro: red line, transmission line engineering, one line, electromagnetic theory, theory and applications microwave, microwave for one


Dati dell'editore

Autore: Christophe Caloz; Tatsuo Itoh
Titolo: Electromagnetic Metamaterials - Transmission Line Theory and Microwave Applications
Editore: John Wiley & Sons
376 Pagine
Anno di pubblicazione: 2005-12-16
Peso: 0,635 kg
Lingua: Inglese
139,00 € (DE)
No longer receiving updates
162mm x 238mm x 21mm

BB; gebunden; Hardcover, Softcover / Technik/Elektronik, Elektrotechnik, Nachrichtentechnik; Mikrowellentechnik; Electrical & Electronics Engineering; Elektrotechnik u. Elektronik; Elektronische Materialien; Mikrowellen- u. Hochfrequenztechnik u. Theorie; Electronic Materials; RF / Microwave Theory & Techniques; Mikrowellen- u. Hochfrequenztechnik u. Theorie; Elektronische Materialien

Electromagnetic metamaterials-from fundamental physics to advanced engineering applications This book presents an original generalized transmission line approach associated with non-resonant structures that exhibit larger bandwidths, lower loss, and higher design flexibility. It is based on the novel concept of composite right/left-handed (CRLH) transmission line metamaterials (MMs), which has led to the development of novel guided-wave, radiated-wave, and refracted-wave devices and structures. The authors introduced this powerful new concept and are therefore able to offer readers deep insight into the fundamental physics needed to fully grasp the technology. Moreover, they provide a host of practical engineering applications. The book begins with an introductory chapter that places resonant type and transmission line metamaterials in historical perspective. The next six chapters give readers a solid foundation in the fundamentals and practical applications: * Fundamentals of LH MMs describes the fundamental physics and exotic properties of left-handed metamaterials * TL Theory of MMs establishes the foundations of CRLH structures in three progressive steps: ideal transmission line, LC network, and real distributed structure * Two-Dimensional MMs develops both a transmission matrix method and a transmission line method to address the problem of finite-size 2D metamaterials excited by arbitrary sources * Guided-Wave Applications and Radiated-Wave Applications present a number of groundbreaking applications developed by the authors * The Future of MMs sets forth an expert view on future challenges and prospects This engineering approach to metamaterials paves the way for a new generation of microwave and photonic devices and structures. It is recommended for electrical engineers, as well as physicists and optical engineers, with an interest in practical negative refractive index structures and materials.

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