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| View Larger Image | FDTD Modeling of Metamaterials: Theory and Applications | Hardcoverby Yang Hao (Author), Raj Mittra (Author)
| List Price: | $139.00 | | Price: | $111.20 | | You Save: | $27.80 (20%) | | | Available: | Usually ships in 24 hours |
| | Binding: | Hardcover | | Publisher: | Artech House Publishers | | Edition: | 1st Edition | | Page Count: | 379 Pages | | Publication Date: | October 31, 2008 | | Sales Rank: | 1,330,852st |
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EDITORIAL REVIEWS | Product Description Artificial metamaterials have made a huge splash in antenna, microwave, and optics engineering thanks to their extraordinary electromagnetic properties. And now, modeling their unique characteristics and behaviors in electromagnetic systems just got easier. This one-stop resource gives engineers powerful finite-difference time-domain (FDTD) techniques for modeling metamaterials, complete with applications and time-saving sample FDTD scripts. This comprehensive volume provides how-to guidance in a wide range of areas that are critical to antenna design, from computing dispersion diagrams and verifying left-handedness...to characterizing the interface of metamaterial slabs. The book also reviews electromagnetic metamaterial basics and FDTD essentials, providing the foundation needed to fully understand the material. |
SIMILAR PRODUCTS |

| Waves in Metamaterials by Laszlo Solymar (Author), Ekaterina Shamonina (Author)
Metamaterials is a young subject born in the 21st century. It is concerned with artificial materials which can have electrical and magnetic properties difficult or impossible to find in nature. The building blocks in most cases are resonant elements much smaller than the wavelength of the electromagnetic wave. The book offers a comprehensive treatment of all aspects of research in this field at a level that should appeal to final year undergraduates in physics or in electrical and electronic...
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| The Finite Difference Time Domain Method for Electromagnetics: With MATLAB Simulations by Atef Elsherbeni (Author), Veysel Demir (Author)
The scope of the book is the fundamental techniques in the FDTD method. The book consists of 12 chapters, each chapter built on the concepts provided in the previous chapters. In each chapter, the details of the concepts are discussed at a graduate student level. Using this book, students will be able to construct a program with sufficient functionally to solve some basic problems. The construction of final equations is presented with a detailed step-by-step approach. In most cases the full-set...
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| Metamaterials: Critique and Alternatives by Benedikt A. Munk (Author)
A Convincing and Controversial Alternative Explanation of Metamaterials with a Negative Index of Refraction In a book that will generate both support and controversy, one of the world's foremost authorities on periodic structures addresses several of the current fashions in antenna design—most specifically, the popular subject of double negative metamaterials. Professor Munk provides a comprehensive theoretical electromagnetic investigation of the issues and concludes that many of...
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| Electromagnetic Metamaterials: Physics and Engineering Explorations by Nader Engheta (Editor), Richard W Ziolkowski (Editor)
Leading experts explore the exotic properties and exciting applications of electromagnetic metamaterials Metamaterials: Physics and Engineering Explorations gives readers a clearly written, richly illustrated introduction to the most recent research developments in the area of electromagnetic metamaterials. It explores the fundamental physics, the designs, and the engineering aspects, and points to a myriad of exciting potential applications. The editors, acknowledged leaders in the...
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| Negative Refraction Metamaterials: Fundamental Principles and Applications by G. V. Eleftheriades (Author), K. G. Balmain (Author)
Learn about the revolutionary new technology of negative-refraction metamaterials Negative-Refraction Metamaterials: Fundamental Principles and Applications introduces artificial materials that support the unusual electromagnetic property of negative refraction. Readers will discover several classes of negative-refraction materials along with their exciting, groundbreaking applications, such as lenses and antennas, imaging with super-resolution, microwave devices,...
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