Electrodynamics Of Solids

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Electrodynamics of Solids

Author : Martin Dressel,George Grüner
Publisher : Cambridge University Press
Page : 490 pages
File Size : 48,5 Mb
Release : 2002-01-17
Category : Science
ISBN : 0521597269

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Electrodynamics of Solids by Martin Dressel,George Grüner Pdf

A graduate-level book about the propagation of electromagnetic fields and their interaction with condensed matter.

Electrodynamics of Solids and Microwave Superconductivity

Author : Shu-Ang Zhou
Publisher : John Wiley & Sons
Page : 652 pages
File Size : 49,8 Mb
Release : 1999-07-23
Category : Technology & Engineering
ISBN : 0471354406

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Electrodynamics of Solids and Microwave Superconductivity by Shu-Ang Zhou Pdf

This book presents the interdisciplinary field of solid electrodynamics and its applications in superconductor and microwave technologies. It gives scientists and engineers the foundation necessary to deal with theoretical and applied electromagnetics, continuum mechanics, applied superconductivity, high-speed electronic circuit design, microwave engineering and transducer technology.

Electrodynamics of Materials

Author : Scipione Bobbio
Publisher : Taylor & Francis US
Page : 384 pages
File Size : 55,8 Mb
Release : 2000
Category : Science
ISBN : 0121082601

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Electrodynamics of Materials by Scipione Bobbio Pdf

This book is a detailed treatment of volume and surface force-densities and mechanical stresses in electrically and/or magnetically polarized bodies. The classical approach applies equally well to the electric and/or to the magnetic case. The issue of computation of force densities in materials is still a controversial one, but it is very important in many practical applications. These include the design of electric machines and various power apparatus, permanent magnet devices, and piezo-electric actuators and sensors. By combining electrodynamic theory, continuum mechanics and classical thermodynamics, important and reliable formulas for force densities are derived and settled. In particular, the well-known controversy between the Helmholtz and the Kelvin formulas for force densities in linear fluid dielectrics is analyzed in detail in the light of existing experimental results. * Thoroughly examines the role of mechanical stress tensor in electric and magnetic polarized materials; its connection with Maxwell's stress tensor is elucidated; the classical Cauchy's argument required to introduce the mechanic stress tensor (the Cauchy cut) is modified in such a way to be applicable to polarized materials * The constitutive relationships of polarized materials are derived from those holding for unpolarized materials * Closely examines the concept of electric and magnetic field energy and its connection with the thermodynamic internal energy of matter * Considers the role of magneto-hydro-statics (MHS) as a modern comprehensive theory including both magnetostatics and hydrostatics; describes several experimental MHS devices suited to test the theory * Examines magneticmaterials from both points of view: Coulombian and Amperian * Provides several different expressions for the resultant force and moment acting upon an electronically or magnetically polarized material body, and compares the two

Introduction to Electromagnetic Theory and the Physics of Conducting Solids

Author : Costas J. Papachristou
Publisher : Springer Nature
Page : 246 pages
File Size : 51,7 Mb
Release : 2019-11-13
Category : Technology & Engineering
ISBN : 9783030309961

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Introduction to Electromagnetic Theory and the Physics of Conducting Solids by Costas J. Papachristou Pdf

This book consists of two parts. Part A (Chapters 1-3) is an introduction to the physics of conducting solids, while Part B (Chapters 4-10) is an introduction to the theory of electromagnetic fields and waves. The book is intended to introduce the student to classical electrodynamics and, at the same time, to explain in simple terms the quantum theory of conducting substances – in particular, the solid ones. Excessive mathematical proof is avoided as much as possible, in favor of pedagogical efficiency at an introductory level. The theory of vector fields is briefly discussed in a separate chapter, helping the student cope with the mathematical challenges of Maxwell's theory. The book serves as a primary source for a sophomore-level electromagnetics course in an electronics-oriented engineering program, but it can also be used as a secondary (tutorial) source for an intermediate-level course in electrodynamics for physicists and engineers. The content is based on the author’s lecture notes for his sophomore-level Physics course at the Hellenic Naval Academy.

Electrodynamics of Continua I

Author : A. Cemal Eringen,Gerard A. Maugin
Publisher : Springer Science & Business Media
Page : 469 pages
File Size : 45,5 Mb
Release : 2012-12-06
Category : Science
ISBN : 9781461232261

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Electrodynamics of Continua I by A. Cemal Eringen,Gerard A. Maugin Pdf

The electrodynamics of continua is a branch ofthe physical sciences concerned with the interaction of electromagnetic fields with deformable bodies. De formable bodies are considered to be continua endowed with continuous distributions of mass and charge. The theory of electromagnetic continua is concerned with the determination of deformations, motions, stress, and elec tromagnetic fields developed in bodies upon the applications of external loads. External loads may be of mechanical origin (e.g., forces, couples, constraints placed on the surface of the body, and initial and boundary conditions arising from thermal and other changes) and/or electromagnetic origin (e.g., electric, magnetic, and current fields). Because bodies of different constitutions respond to external stimuli in a different way, it is imperative to characterize properly the response functions relevant to a given class of continua. This is done by means of the constitutive theory. For example, an elastic dielectric responds to electromagnetic fields in a totally different way than a magnetic fluid. The present book is intended to present a unified approach to the subject matter, based on the principles of contemporary continuum physics.

Optical Properties of Solids

Author : Frederick Wooten
Publisher : Academic Press
Page : 272 pages
File Size : 53,5 Mb
Release : 2013-10-22
Category : Science
ISBN : 9781483220765

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Optical Properties of Solids by Frederick Wooten Pdf

Optical Properties of Solids covers the important concepts of intrinsic optical properties and photoelectric emission. The book starts by providing an introduction to the fundamental optical spectra of solids. The text then discusses Maxwell's equations and the dielectric function; absorption and dispersion; and the theory of free-electron metals. The quantum mechanical theory of direct and indirect transitions between bands; the applications of dispersion relations; and the derivation of an expression for the dielectric function in the self-consistent field approximation are also encompassed. The book further tackles current-current correlations; the fluctuation-dissipation theorem; and the effect of surface plasmons on optical properties and photoemission. People involved in the study of the optical properties of solids will find the book invaluable.

Mechanics of Electromagnetic Solids

Author : J.S. Yang,Gérard A. Maugin
Publisher : Springer Science & Business Media
Page : 289 pages
File Size : 41,5 Mb
Release : 2013-12-01
Category : Science
ISBN : 9781461302438

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Mechanics of Electromagnetic Solids by J.S. Yang,Gérard A. Maugin Pdf

The mechanics of electromagnetic materials and structures has been developing rapidly with extensive applications in, e. g. , electronics industry, nuclear engineering, and smart materials and structures. Researchers in this interdisciplinary field are with diverse background and motivation. The Symposium on the Mechanics of Electromagnetic Materials and Structures of the Fourth International Conference on Nonlinear Mechanics in Shanghai, China in August 13-16, 2002 provided an opportunity for an intimate gathering of researchers and exchange of ideas. This volume contains papers based on most of the presentations at the symposium, and articles from a few invited contributors. These papers reflect some of the recent activities in the mechanics of electromagnetic materials and structures. The first twelve papers are in the order in which they were listed in the program of the conference. These are followed by six invited papers in alphabetical order of the last names of the first authors. We would like to extend our sincere thanks to Professor David Y. Gao of Virginia Tech for suggesting the symposium, and to the authors for their time and effort invested in preparing their manuscripts. We are also grateful to Professor Daining Fang of Tsinghua University for co-chairing the symposium with J. S. Yang. Our special thanks belong to Kluwer for preparing this book for publication. J. S. Yang G. A. Maugin PIEZOELECTRIC VIBRATORY GYROSCOPES J. S.

Electrodynamic Theory of Superconductors

Author : Shu-Ang Zhou
Publisher : IET
Page : 342 pages
File Size : 54,5 Mb
Release : 1991
Category : Science
ISBN : 0863412572

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Electrodynamic Theory of Superconductors by Shu-Ang Zhou Pdf

This book presents a unified and comprehensive theoretical treatment of electromagnetic, thermal and mechanical phenomena in superconductors. Introduces basic concepts and principles with particular emphasis on general methodology.

Optical Effects in Solids

Author : David B. Tanner
Publisher : Cambridge University Press
Page : 413 pages
File Size : 43,7 Mb
Release : 2019-05-02
Category : Science
ISBN : 9781107160149

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Optical Effects in Solids by David B. Tanner Pdf

An overview of the optical effects in solids, this book addresses the physics of materials and their response to electromagnatic radiation--back cover.

Plasmonics and Light–Matter Interactions in Two-Dimensional Materials and in Metal Nanostructures

Author : Paulo André Dias Gonçalves
Publisher : Springer Nature
Page : 232 pages
File Size : 53,8 Mb
Release : 2020-03-19
Category : Science
ISBN : 9783030382919

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Plasmonics and Light–Matter Interactions in Two-Dimensional Materials and in Metal Nanostructures by Paulo André Dias Gonçalves Pdf

This thesis presents a comprehensive theoretical description of classical and quantum aspects of plasmonics in three and two dimensions, and also in transdimensional systems containing elements with different dimensionalities. It focuses on the theoretical understanding of the salient features of plasmons in nanosystems as well as on the multifaceted aspects of plasmon-enhanced light–matter interactions at the nanometer scale. Special emphasis is given to the modeling of nonclassical behavior across the transition regime bridging the classical and the quantum domains. The research presented in this dissertation provides useful tools for understanding surface plasmons in various two- and three-dimensional nanostructures, as well as quantum mechanical effects in their response and their joint impact on light–matter interactions at the extreme nanoscale. These contributions constitute novel and solid advancements in the research field of plasmonics and nanophotonics that will help guide future experimental investigations in the blossoming field of nanophotonics, and also facilitate the design of the next generation of truly nanoscale nanophotonic devices.

Linear Electrodynamic Response of Topological Semimetals

Author : Artem V. Pronin
Publisher : Springer Nature
Page : 141 pages
File Size : 42,5 Mb
Release : 2023-08-17
Category : Technology & Engineering
ISBN : 9783031356377

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Linear Electrodynamic Response of Topological Semimetals by Artem V. Pronin Pdf

This book provides a model description for the electromagnetic response of topological nodal semimetals and summarizes recent experimental findings in these systems. Specifically, it discusses various types of topological semimetals – Dirac, Weyl, nodal-line, triple-point, and multifold semimetals – and provides description for the characteristic features of the linear electrodynamic response for all these types of materials. Topological semimetals possess peculiar bulk electronic band structure, which leads to unusual electrodynamic response. For example, the low-energy inter-band optical conductivity of nodal semimetals is supposed to demonstrate power-law frequency dependence and the intra- and inter-band contributions to the conductivity are often mixed. Further, the magneto-optical response is also unusual, because of the non-equidistant spacing between the Landau levels. Finally, in semimetals with chiral electronic bands, e.g. in Weyl semimetals, the simultaneous application of parallel magnetic and electric fields leads to the chiral anomaly, i.e. to a misbalance between the electrons with diffident chiralities. This misbalance affects the electrodynamics properties of the material and can be detected optically. All these points are addressed here in detail. The book is written for a wide audience of physicists, working in the field of topological condensed matter physics. It gives a pedagogical introduction enabling graduate students and non-experts to familiarize themselves with the subject.

A Compendium of Solid State Theory

Author : Ladislaus Alexander Bányai,Ladislaus Alexander Goethe Universität
Publisher : Unknown
Page : 211 pages
File Size : 41,5 Mb
Release : 2020
Category : Electronic books
ISBN : 3030373606

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A Compendium of Solid State Theory by Ladislaus Alexander Bányai,Ladislaus Alexander Goethe Universität Pdf

Designed to sit alongside more conventional established condensed matter physics textbooks, this compact volume offers a concise presentation of the principles of solid state theory, ideal for advanced students and researchers requiring an overview or a quick refresher on a specific topic. The book starts from the one-electron theory of solid state physics, moving through electron-electron interaction and many-body approximation schemes, to lattice oscillations and their interactions with electrons. Subsequent chapters discuss transport theory and optical properties, phase transitions and some properties of low-dimensional semiconductors. This extensively expanded second edition includes new material on adiabatic perturbation theory, kinetic coefficients, the Nyquist theorem, Bose condensation, and the field-theoretical approach to non-relativistic quantum electrodynamics. Throughout the text, mathematical proofs are often only sketched, and the final chapter of the book reviews some of the key concepts and formulae used in theoretical physics. Aimed primarily at graduate and advanced undergraduate students taking courses on condensed matter theory, the book serves as a study guide to reinforce concepts learned through conventional solid state texts. Researchers and lecturers will also find it a useful resource as a concise set of notes on fundamental topics.

Optical Techniques for Solid-State Materials Characterization

Author : Rohit P. Prasankumar,Antoinette J. Taylor
Publisher : CRC Press
Page : 735 pages
File Size : 43,9 Mb
Release : 2016-04-19
Category : Science
ISBN : 9781439814376

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Optical Techniques for Solid-State Materials Characterization by Rohit P. Prasankumar,Antoinette J. Taylor Pdf

Over the last century, numerous optical techniques have been developed to characterize materials, giving insight into their optical, electronic, magnetic, and structural properties and elucidating such diverse phenomena as high-temperature superconductivity and protein folding. Optical Techniques for Solid-State Materials Characterization provides

Continuum Mechanics of Electromagnetic Solids

Author : G.A. Maugin
Publisher : Elsevier
Page : 621 pages
File Size : 53,7 Mb
Release : 2013-10-22
Category : Science
ISBN : 9781483290102

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Continuum Mechanics of Electromagnetic Solids by G.A. Maugin Pdf

This volume is a rigorous cross-disciplinary theoretical treatment of electromechanical and magnetomechanical interactions in elastic solids. Using the modern style of continuum thermomechanics (but without excessive formalism) it starts from basic principles of mechanics and electromagnetism, and goes on to unify these two fields in a common framework. It treats linear and nonlinear static and dynamic problems in a variety of elastic solids such as piezoelectrics, electricity conductors, ferromagnets, ferroelectrics, ionic crystals and ceramics. Chapters 1-3 are introductory, describing the essential properties of electromagnetic solids, the essentials of the thermomechanics of continua, and the general equations that govern the electrodynamics of nonlinear continua in the nonrelativistic framework (e.g. Maxwell's equations, the fundamental balance laws of continuum mechanics, basic thermodynamical inequalities for electromagnetic continua, jump relations for studying the propagation of shock waves, nonlinear constitutive equations for large classes of materials). The remainder of the text presents in detail special cases, applications, solved problems, and more complex schemes of electromagnetic matter. Chapters 4 and 5 examine material schemes whose description relies on the above-mentioned equations. Chapters 6 and 7 are more advanced, reporting on recent progress in the field. Suitable for graduate teaching, the volume will also be useful to research workers and engineers in the field of electromagnetomechanical interactions, and to those interested in the basic principles, mathematical developments and applications of electroelasticity and magnetoelasticity in a variety of solid materials, such as crystals, polycrystals, compounds and alloys.

Mechanics and Electrodynamics of Magneto- and Electro-elastic Materials

Author : Raymond Ogden,David Steigmann
Publisher : Springer Science & Business Media
Page : 268 pages
File Size : 43,7 Mb
Release : 2011-05-25
Category : Science
ISBN : 9783709107010

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Mechanics and Electrodynamics of Magneto- and Electro-elastic Materials by Raymond Ogden,David Steigmann Pdf

This volume presents a state-of-the-art overview of the continuum theory of both electro- and magneto-sensitive elastomers and polymers, which includes mathematical and computational aspects of the modelling of these materials from the point of view of material properties and, in particular, the "smart-material" control of their mechanical properties.