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Titlebook: Metamaterials and Plasmonics: Fundamentals, Modelling, Applications; Sa?d Zouhdi,Ari Sihvola,Alexey P. Vinogradov Conference proceedings 2

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書目名稱Metamaterials and Plasmonics: Fundamentals, Modelling, Applications
編輯Sa?d Zouhdi,Ari Sihvola,Alexey P. Vinogradov
視頻videohttp://file.papertrans.cn/632/631647/631647.mp4
概述Most up-to-date information (NATO ARW of 2008) about the field.Articles by the cutting-edge researchers in the fields of metamaterials and plasmonics.Covers both theory, modelling, fabrication, and ap
叢書名稱NATO Science for Peace and Security Series B: Physics and Biophysics
圖書封面Titlebook: Metamaterials and Plasmonics: Fundamentals, Modelling, Applications;  Sa?d Zouhdi,Ari Sihvola,Alexey P. Vinogradov Conference proceedings 2
描述.Metamaterials and plasmonics are cross-disciplinary fields that are emerging into the mainstream of many scientific areas. Examples of scientific and technical fields which are concerned are electrical engineering, micro- and nanotechnology, microwave engineering, optics, optoelectronics, and semiconductor technologies. In plasmonics, the interplay between propagating electromagnetic waves and free-electron oscillations in materials are exploited to create new components and applications. On the other hand, metamaterials refer to artificial composites in which small artificial elements, through their collective interaction, creates a desired and unexpected macroscopic response function that is not present in the constituent materials....This book charts the state of the art of these fields. In May 2008, world-leading experts in metamaterials and plasmonics gathered into a NATO Advanced Research Workshop in Marrakech, Morocco. The present book contains extended versions of 22 of the presentations held in the workshop, covering the general aspects of the field, as well as design and modelling questions of plasmonics and metamaterials, fabrication issues, and applications like absorb
出版日期Conference proceedings 2009
關鍵詞Biophysics; NATO; Peace; Physics; Science; Security; Semiconductor; Sub-Series B; electromagnetic wave; metam
版次1
doihttps://doi.org/10.1007/978-1-4020-9407-1
isbn_softcover978-1-4020-9406-4
isbn_ebook978-1-4020-9407-1Series ISSN 1874-6500 Series E-ISSN 1874-6535
issn_series 1874-6500
copyrightSpringer Science+Business Media B.V. 2009
The information of publication is updating

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Transformation and Moving Media: A Unified Approach Using Geometric Algebraia through a unified approach. Special emphasis is given to the application of this new method that uses the two geometric algebras defined over the tangent and cotangent bundles of space-time and is based on a technique that we have called the vacuum form reduction: the space-time constitutive rela
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Homogenization of Split-Ring Arrays, Seen as the Exploitation of Translational Symmetryterials. This cost reduction stems from the possibility to compute effectiv permeability and permittivity of an equivalent homogenized material by solving an auxiliary “cell problem” on the generating cell of the metamaterial. The firs part of this paper is a tutorial, where the procedure is describ
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Applications of EBG in Low Profile Antenna Designs: What Have We Learned?n and optimization techniques are utilized to characterize and design EBG and antennas. An insight into operational physics of the EBG structures has been presented. Representative antenna examples are illustrated to show our current knowledge on the potential applications of the EBG metamaterials.
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Negative Index Metamaterial Lens for the Scanning Angle Enhancement of Phased-Array Antennasr performance and lighter weight. This work presents the design and full wave simulations of a NIM lens to enable a Phased-Array Antenna (PAA) to scan to the horizon. Simulation and optimization techniques are discussed in detail with fabrication issues considered along the way. Simplified 2D effect
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