Skip to content
Home/ Metamaterials and Metasurfaces: Basics and trends
Metamaterials and Metasurfaces: Basics and trends

Metamaterials and Metasurfaces: Basics and trends

No customer reviews yet ISBN 9780750355308 Iop Publishing Ltd

Metamaterials are commonly known to make things invisible. As artificially structured metal-dielectric composites mimicking natural materials they exhibit properties that are not available in nature including: negative refractive index, reversal of Doppler Effect and the reversed Čerenkov Effect. Metasurface is a planar version of metamaterial exhibiting a number of novel functionalities.

This book reviews the physics, technology, and design issues related to metamaterials and metasurfaces. The text covers the fundamental concepts and potential applications as well as future trends. It explores all aspects of metamaterial's and metasurface's physics and engineering operating in the electromagnetic spectrum covering microwave, terahertz and optical domain. This is a suitable text for teaching in bachelors and masters degree courses on metamaterials and metasurfaces in universities and engineering colleges. The key audience for this book includes students enrolled on metamaterials and metasurfaces modules, researchers, as well as industry professionals.

Key Features:

  • Provides an introduction to the physics, analysis and technology of metamaterials and metasurfaces.
  • Covers a range of metamaterial and metasurface developments in microwave, terahertz and optical domain with application view points and future trends.
  • Can be used as a text book for postgraduate teaching with specialization in metamaterials and metasurfaces.
  • Contains solved design problems which may be useful for dissertation work at the postgraduate level.

About the author

Product details

BrandIop Publishing Ltd
Pub dateApr 28, 2023
ISBN-100750355301
ISBN-139780750355308
Hardcover272.0 pages
LanguageEnglish
Dimensions10.04 × 0.81 × 7.38 in
Weight1 lb
Last updated 2026-04-24 12:28
$125.04
In stock — ships in 24 hours with free tracking
Delivery by Monday, September 14, 2026
Qty
Sign in to Add to Saved list
Free delivery on orders over $35.
15-day returns. Any reason.
Secure checkout. We never store card details.

Readers who bought this also bought

More from Materials Science - Electronic Materials
See all
Materials Synthesis and Characterization (1997)
One area of science that has shown an explosive growth over the last few decades is materials science. Inherently by nature products of both basic and applied research, materials make possible life and society as we know it today. Materials, ranging from ceramics to semiconductors to composites, are such that new ones must not only be designed and made ... they must also be characterized in terms of their physical, chemical, and mechanical properties. Thus, many new state- of-the-art techniques involving spectroscopy, microscopy, and other approaches are now routinely used. Modem materials have wide applications in many sectors of technology. Films, for example, constitute an enormous area of materials and are used extensively. Films in tum can be integrated with other systems such as superconducting metal oxides and organic superconductors. Additionally, ceramics can also be synthesized and fabricated as films for different applications. Catalysts, too, can vary widely in both composition and form. The number of applications for catalysts in industry must easily rank as one of the highest number of applications for any class of materials. Catalysis is impOltant for a wide range of activities in industry, from petroleum refining to the synthesis of a large number of industrial feedstock materials. Researchers in this area of materials are constantly trying to unravel new approaches to making better catalysts.
$114.64
Specimen Handling, Preparation, and Treatments in Surface Characterization (1998)
With the development in the 1960s of ultrahigh vacuum equipment and techniques and electron, X-ray, and ion beam techniques to determine the structure and composition of interfaces, activities in the field of surface science grew nearly exponentially. Today surface science impacts all major fields of study from physical to biological sciences, from physics to chemistry, and all engineering disciplines. The materials and phenomena characterized by surface science range from se- conductors, where the impact of surface science has been critical to progress, to metals and ceramics, where selected contributions have been important, to bio- terials, where contributions are just beginning to impact the field, to textiles, where the impact has been marginal. With such a range of fields and applications, questions about sample selection, preparation, treatment, and handling are difficult to cover completely in one review article or one chapter. Therefore, the editors of this book have assembled a range of experts with experience in the major fields impacted by surface characterization. It is the only book which treats the subject of sample handling, preparation, and treatment for surface characterization. It is full of tricks, cautions, and handy tips to make the laboratory scientist's life easier. With respect to organization of the book, the topics range from discussion of vacuum to discussion of biological, organic, elemental or compound samples, to samples prepared ex situ or in situ to the vacuum, to deposition ofthin films. Generic considerations of sample preparation are also given.
$177.01