Electromagnetic Fields in Unconventional Materials and Structures

Electromagnetic Fields in Unconventional Materials and Structures

Einband:
Fester Einband
EAN:
9780471363569
Untertitel:
Wiley Series in Microwave and Optical Engineering
Genre:
Elektrotechnik
Autor:
Onkar N. (Banaras Hindu University) Lakhtak Singh
Herausgeber:
John Wiley & Sons
Auflage:
1. Auflage
Anzahl Seiten:
520
Erscheinungsdatum:
10.10.2000
ISBN:
978-0-471-36356-9

Beim Design spezialisierter mikroelektronischer Bauelemente, Mikrowellengeräte und Antennen greift man zunehmend auf Materialien mit unkonventionellen Strukturen zurück - Nanoröhren, Helixstrukturen, dünne Schichten und Mehrschicht-Wellenleiter sind nur einige Stichworte. Kompetente Fachleute widmen sich in den in diesem Band enthaltenen Beiträgen der Theorie des Verhaltens solcher Werkstoffe.

Zusatztext "In summary! Electromagnetic Fields in Unconventional Materials and Structures is an advanced book! written by experts! that is bound to be useful to serious researchers" (Int. Jnl. of Electronics and Communications! Vol.55! No.5! 2001)"Congratulations! The book is a pearl. It is like a treasury." (Optik - Int. Jnl. for Light & Electron Optics! Vol.112! No.19! 2001) Informationen zum Autor Onkar N. Singh is the editor of Electromagnetic Fields in Unconventional Materials and Structures, published by Wiley. Akhlesh Lakhtakia is Evan Pugh University Professor and Charles Godfrey Binder Professor of Engineering Science and Mechanics at the Pennsylvania State University. His research focuses on electromagnetic fields in complex materials, such as sculptured thin films, chiral materials, and bianisotropy. Klappentext Beim Design spezialisierter mikroelektronischer Bauelemente, Mikrowellengeräte und Antennen greift man zunehmend auf Materialien mit unkonventionellen Strukturen zurück - Nanoröhren, Helixstrukturen, dünne Schichten und Mehrschicht-Wellenleiter sind nur einige Stichworte. Kompetente Fachleute widmen sich in den in diesem Band enthaltenen Beiträgen der Theorie des Verhaltens solcher Werkstoffe. (11/00) Zusammenfassung Electromagnetic effects in unconventional structures and materials in electronics are becoming more important as device sizes shrink. This trend will continue, and as the use of these materials becomes more cost effective, there will be an increased need for a theoretical understanding of this subject. Inhaltsverzeichnis Scalar Hertz Potentials for Linear Bianisotropic Mediums (W. Weiglhofer).Recent Developments in the Homogenization of Linear Bianisotropic Composite Materials (B. Michel).Novel Free-Space Techniques to Characterize Complex Mediums (G. Borzdov).A Mini-Review on Isotropic Chiral Mediums (A. Lakhtakia).Sculptured Thin Films: Conception, Optical Properties, and Applications (V. Venugopal & A. Lakhtakia).Electrodynamic Properties of Carbon Nanotubes (S. Maksimenko & G. Slepyan).Numerical Analyses of Optical Propagation and Interaction in Nonlinear Photorefractive Materials (P. Banerjee & J. Jarem).Some Multilayered and Other Unconventional Lightguides (P. Choudhury & O. Singh).All-Fiber Guided Wave Components (B. Pal).Electromagnetic Wave Propagation Through Helical Structures (P. Jain & B. Basu).Indexes....

Autorentext
Onkar N. Singh is the editor of Electromagnetic Fields in Unconventional Materials and Structures, published by Wiley. Akhlesh Lakhtakia is Evan Pugh University Professor and Charles Godfrey Binder Professor of Engineering Science and Mechanics at the Pennsylvania State University. His research focuses on electromagnetic fields in complex materials, such as sculptured thin films, chiral materials, and bianisotropy.

Zusammenfassung
Electromagnetic effects in unconventional structures and materials in electronics are becoming more important as device sizes shrink. This trend will continue, and as the use of these materials becomes more cost effective, there will be an increased need for a theoretical understanding of this subject.

Inhalt
Scalar Hertz Potentials for Linear Bianisotropic Mediums (W. Weiglhofer). Recent Developments in the Homogenization of Linear Bianisotropic Composite Materials (B. Michel). Novel Free-Space Techniques to Characterize Complex Mediums (G. Borzdov). A Mini-Review on Isotropic Chiral Mediums (A. Lakhtakia). Sculptured Thin Films: Conception, Optical Properties, and Applications (V. Venugopal & A. Lakhtakia). Electrodynamic Properties of Carbon Nanotubes (S. Maksimenko & G. Slepyan). Numerical Analyses of Optical Propagation and Interaction in Nonlinear Photorefractive Materials (P. Banerjee & J. Jarem). Some Multilayered and Other Unconventional Lightguides (P. Choudhury & O. Singh). All-Fiber Guided Wave Components (B. Pal). Electromagnetic Wave Propagation Through Helical Structures (P. Jain & B. Basu). Indexes.


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