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Electrodynamics of Metamaterials

Vladimir M. Shalaev, Audrey K. Sarychev

Electrodynamics of Metamaterials Vladimir M. Shalaev, Audrey K. Sarychev Amazon Price: $40.00
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By: World Scientific Publishing Company
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Editorial Review:

Light is in a sense "one-handed" when interacting with atoms of conventional materials. This is because out of the two field components of light, electric and magnetic, only the electric "hand" efficiently probes the atoms of a material, whereas the magnetic component remains relatively unused because the interaction of atoms with the magnetic field component of light is normally weak. Metamaterials, i.e. artificial materials with rationally designed properties, can enable the coupling of both of the field components of light to meta-atoms, enabling entirely new optical properties and exciting applications with such "two-handed" light. Among the fascinating properties is a negative refractive index. The refractive index is one of the most fundamental characteristics of light propagation in materials. Metamaterials with negative refraction may lead to the development of a superlens capable of imaging objects and their fine structures that are much smaller than the wavelength of light. Other exciting applications of metamaterials include novel antennae with superior properties, optical nano-lithography and nano-circuits, and "meta-coatings" that can make objects invisible. The word "meta" means "beyond" in Greek, and in this sense the name "metamaterials" refers to "beyond conventional materials." Metamaterials are typically man-made and have properties not available in nature. What is so magical about this simple merging of "meta" and "materials" that has attracted so much attention from researchers and has resulted in exponential growth in the number of publications in this area? The answer you can find in this book.

Electromechanics of Particles

Thomas B. Jones

Electromechanics of Particles Thomas B. Jones Amazon Price: $119.81
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By: Cambridge University Press
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Total reviews: 1 Average rating: 4.0 of 5

Editorial Review:

The focus of this book is on the interactions of small particles, in the size range of microns to millimeters, with electric or magnetic fields. This field has particularly useful practical applications, for instance in photocopier technology and lately in the characterization and manipulation of cells and DNA molecules. The author's objective is to bring together diverse examples of field-particle interactions from many areas of science and technology and then to provide a framework for understanding their common electromechanical phenomena. Using examples from dielectrophoresis, magnetic brush xerography, electrorheology, cell electrorotation, and particle chain rotation, Professor Jones introduces a general model--the effective dipole method--to build a set of predictive models for the forces and torques responsible for the important electromechanical effects. In the last part of the book, the author covers the ubiquitous phenomenon of particle chaining. This book will be highly useful to material engineers and scientists, chemists, and biologists who work with particles, powders, or granular materials.

Surface Plasmon Nanophotonics (Springer Series in Optical Sciences)

Surface Plasmon Nanophotonics (Springer Series in Optical Sciences) Amazon Price: $127.20
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Subjects -> Professional & Technical -> Engineering -> Electrical & Electronics -> Optics -> General

Editorial Review:

The development of advanced dielectric photonic structures has enabled tremendous control over the propagation and manipulation of light. Structures such as waveguides, splitters, mixers, and resonators now play a central role in the telecommunications industry. This book will discuss an exciting new class of photonic devices, known as surface plasmon nanophotonic structures. Surface plasmons are easily accessible excitations in metals and semiconductors and involve a collective motion of the conduction electrons. These excitations can be exploited to manipulate electromagnetic waves at optical frequencies ("light") in new ways that are unthinkable in conventional dielectric structures. The field of plasmon nanophotonics is rapidly developing and impacting a wide range of areas including: electronics, photonics, chemistry, biology, and medicine. The book will highlight several exciting new discoveries that have been made, while providing a clear discussion of the underlying physics, the nanofabrication issues, and the materials considerations involved in designing plasmonic devices with new functionality.

The book is aimed at researchers and students interested in entering the field of plasmon nanophotonics, while serving as a reference to scientists already active in this area of research. It is written at the level of a first year graduate student with some background in electromagnetic theory and working knowledge of Maxwell’s equations.

Dielectric Resonators (Artech House Antennas and Propagation Library)

D. Kajfex

Dielectric Resonators (Artech House Antennas and Propagation Library) D. Kajfex List Price: $55.00
By: Kajfez Consulting
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Customer Reviews:
Total reviews: 1 Average rating: 5.0 of 5

Brilliantly written 5 out of 5 stars.
1 of 1 people found this review helpful.

this the most comprehensive book on dielectric resontors and perhaphs the only one in the market.the concepts are explained in depth and are easy to understand becaue of the lucid style.i highly recommend it.

Editorial Review:

This is the definite reference text on dielectric resonators used in filters and oscillators. This second edition includes corrections and updates, a new chapter on how to use the program included on a new disk. Sections are devoted to properties of materials, coupling techniques and filter and oscillator design using dielectric resonators. Programs implement the models presented in the book and identify the frequencies of all the modes.

Dielectrics and Waves (Microwave Library)

Arthur R. Von Hippel

Dielectrics and Waves (Microwave Library) Arthur R. Von Hippel List Price: $144.00
By: Artech House
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Dielectric Materials and Applications (Artech House Microwave Library)

Dielectric Materials and Applications (Artech House Microwave Library) List Price: $155.00
By: Artech House
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Editorial Review:

Author hopes to establish alliances between research worker, development engineer, manufacturer, field engineer, and actual user of nonmetals. DLC: Dielectrics.

Dielectrics in Electric Fields (Power Engineering, 19)

Gorur G. Raju

Dielectrics in Electric Fields (Power Engineering, 19) Gorur G. Raju Amazon Price: $104.95
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Editorial Review:

Examines the influences of electric fields on dielectric materials and explores their distinctive behavior through well established principles of physics and engineering in recent literature on dielectrics.

Excess Electrons in Dielectric Media

Christiane Ferradini, Jean-Paul Jay-Gerin

Excess Electrons in Dielectric Media Christiane Ferradini, Jean-Paul Jay-Gerin Amazon Price: $460.00
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Editorial Review:

This book provides a comprehensive review of the present knowledge and current problems concerning physical-chemical aspects of the behavior of excess electrons in various media. The book's 13 chapters strike a balance between theoretical and experimental accounts and provide in-depth presentations of specific subjects. Among the several topics discussed in this stimulating volume are primary interactions, transport, and relaxation of excess electrons of a few tens of electron-Volts in various solid and liquid materials; energetics and transport properties of electrons after thermalization in non-polar dielectric liquids; quantum simulation methods; and electron solvation in polar liquids and of excess electrons trapped in polar matrices at low temperature. Applications of these concepts are discussed as well, including hot electron transport in silicon dioxide, the fate of excess electrons created in polar dielectric liquids by photoelectrochemical methods or by cathodic generation, and excess electron production and decay in organic microheterogeneous systems. Researchers, instructors, and engineers working in the radiation sciences, condensed-matter physics, chemical physics, biophysics, photochemistry, and the biochemistry of electron transfer and electrochemistry should consider this book to be an invaluable reference resource.

1999 Annual Report Conference on Electrical Insulation and Dielectric Phenomena (Conference on Electrical Insulation and Dielectric Phenomena//Annual Report)

1999 Annual Report Conference on Electrical Insulation and Dielectric Phenomena (Conference on Electrical Insulation and Dielectric Phenomena//Annual Report) Amazon Price: $186.00
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By: IEEE Standards Office
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Editorial Review:

Proceedings from the 1999 Conference on Electrical Insulation and Dielectric Phenomena. Papers cover such topics as: polarization and space charge; electrohydrodynamics; partial discharges; and interfacial phenomena.

Advanced Gate Stacks for High-Mobility Semiconductors (Springer Series in Advanced Microelectronics)

Advanced Gate Stacks for High-Mobility Semiconductors (Springer Series in Advanced Microelectronics) Amazon Price: $131.13
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Editorial Review:

Will nanoelectronic devices continue to scale according to Moore’s law? At this moment, there is no easy answer since gate scaling is rapidly emerging as a serious roadblock for the evolution of CMOS technology. Channel engineering based on high-mobility semiconductor materials (e.g. strained Si, alternative orientation substrates, Ge or III-V compounds) could help overcome the obstacles since they offer performance enhancement. There are several concerns though. Do we know how to make complex engineered substrates (e.g. Germanium-on-Insulator)? Which are the best interface passivation methodologies and (high-k) gate dielectrics on Ge and III-V compounds? Can we process these materials in short channel transistors using flows, toolsets and know how similar to that in Si technology? How do these materials and devices behave at the nanoscale? The reader will get a clear view of what has been done so far, what is the state-of-the-art and which are the main challenges ahead before we come any close to a viable Ge and III-V MOS technology.


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