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OverviewMetamaterials, including their two-dimensional counterparts, are composed of subwavelength-scale artificial particles. These materials have novel electromagnetic properties, and can be artificially tailored for various applications. Based on metamaterials and metasurfaces, many abnormal physical phenomena have been realized, such as negative refraction, invisible cloaking, abnormal reflection and focusing, and many new functions and devices have been developed. The effective medium theory lays the foundation for design and application of metamaterials and metasurfaces, connecting metamaterials with real world applications. In this Element, the authors combine these essential ingredients, and aim to make this Element an access point to this field. To this end, they review classical theories for dielectric functions, effective medium theory, and effective parameter extraction of metamaterials, also introducing front edge technologies like metasurfaces with theories, methods, and potential applications. Energy densities are also included. Full Product DetailsAuthor: Wei Xiang Jiang , Zhong Lei Mei , Tie Jun CuiPublisher: Cambridge University Press Imprint: Cambridge University Press Edition: New edition Dimensions: Width: 15.20cm , Height: 0.50cm , Length: 22.90cm Weight: 0.145kg ISBN: 9781108819183ISBN 10: 1108819184 Pages: 75 Publication Date: 03 February 2022 Audience: General/trade , General Format: Paperback Publisher's Status: Active Availability: Manufactured on demand ![]() We will order this item for you from a manufactured on demand supplier. Table of Contents1. Introduction; 2. Classical theories for the dielectric function; 3. Retrieval methods of effective medium parameters; 4. Homogenization of metamaterials by field averaging; 5. Effective medium theory of metamaterials; 6. Energy densities in artificial metamaterials; 7. Effective medium theory for 2D metasurfaces; 8. Conclusion; Notation; References.ReviewsAuthor InformationTab Content 6Author Website:Countries AvailableAll regions |