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Electromagnetic metamaterials having the composition of conductive particles and traces in a dielectric matrix, these (2006) Metamaterials Physics and Engineering Explorations Published by John Wiley & Sons, In, Canada. Title: Metamaterials: Types, applications, development, and future scope Author: Khushnuma Parveen;IJARIIT Subject: Metamaterial perfect absorbers have received significant attention owing to their ability of achieving complete absorption of the electromagnetic waves with deeply subwavelength profiles. In this chapter, we will present a general review of the recent progress on theories, designs, and characterizations of metamaterial absorbers. We will first review the fundamental theories and design Broad classification of metamaterials is presented in this paper with emphasis on their functionality in antenna design and a comparative survey is presented to highlight the advantages of using the meetamaterial antennas as against the conventional antennas to the above-mentioned parameters. 4 View 1 excerpt, cites background Keywords: metamaterials, left-handed materials, negative-index of refraction materials, split-ring resonator 1. INTRODUCTION Metamaterials are artificial, usually periodic structures which exhibit advantageous and unusual electromagnetic properties. According to [1], a metamaterial is defined as: "an object that gains its electromagnetic material Physics and Engineering Explorations Edited by NADER ENGHETA RICHARD W. ZIOLKOWSKI 1.11 Metamaterials with a Zero Index of Refraction 32 1.12 Summary 37 References 37 ELECTROMAGNETIC BANDGAP (EBG) METAMATERIALS 211 SECTIONI THREE-DIMENSIONAL VOLUMETRIC EBG MEDIA 213 Metamaterials and metasurfaces have attracted much attention due to their powerful ability to control electromagnetic (EM) waves. In this paper, we review the recent developments in the field of EM metamaterials, starting from their exotic physics to their applications in novel information systems. Engheta N, Ziolkowski RW, eds. Electromagnetic Metamaterials: Physics and Engineering Explorations. Wiley-IEEE Press, New York, 2006. Google Scholar Soukoulis C M, Linden S, Wegener M. Negative refractive index atoptical wavelengths. Science, 2007, 315(5808): 47-49. Article Google Scholar Leading experts explore the exotic properties and excitingapplications of electromagnetic metamaterials Metamaterials: Physics and Engineering Explorations givesreaders a clearly written, richly illustrated introduction to themost recent research developments in the area of electromagneticmetamaterials. A metamaterial (from the Greek word μετά meta, meaning "beyond" and the Latin word materia, meaning "matter" or "material") is any material engineered to have a property that is not found in naturally occurring materials. [3] They are made from assemblies of multiple elements fashioned fr
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