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Electrodynamics of Quantum-Critical Conductors and Superconductors

Electrodynamics of Quantum-Critical Conductors and Superconductors
Author: Uwe Santiago Pracht
Publisher: Springer
Total Pages: 194
Release: 2017-12-14
Genre: Technology & Engineering
ISBN: 3319728024

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This thesis presents and discusses recent optical low-temperature experiments on disordered NbN, granular Al thin-films, and the heavy-fermion compound CeCoIn5, offering a unified picture of quantum-critical superconductivity. It provides a concise introduction to the respective theoretical models employed to interpret the experimental results, and guides readers through in-depth calculations supplemented with supportive figures in order to both retrace the interpretations and span the bridge between experiment and state-of-the art theory.


Electrodynamic Theory of Superconductors

Electrodynamic Theory of Superconductors
Author: Shu-Ang Zhou
Publisher: IET
Total Pages: 342
Release: 1991
Genre: Science
ISBN: 9780863412578

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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.


Introduction to Superconductivity

Introduction to Superconductivity
Author: A.C. Rose-Innes
Publisher: Elsevier
Total Pages: 262
Release: 2012-12-02
Genre: Science
ISBN: 0323161928

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Introduction to Superconductivity differs from the first edition chiefly in Chapter 11, which has been almost completely rewritten to give a more physically-based picture of the effects arising from the long-range coherence of the electron-waves in superconductors and the operation of quantum interference devices. In this revised second edition, some further modifications have been made to the text and an extra chapter dealing with ""high-temperature"" superconductors has been added. A vast amount of research has been carried out on these since their discovery in 1986 but the results, both theoretical and experimental, have often been contradictory, and seven years later there remains little understanding of their behavior. This book comprises 14 chapters, with the first focusing on zero resistance. Succeeding chapters then discuss perfect diamagnetism; electrodynamics; the critical magnetic field; thermodynamics of the transition; the intermediate state; and transport currents in superconductors. Other chapters cover the superconducting properties of small specimens; the microscopic theory of superconductivity; tunneling and the energy gap; coherence of the electron-pair wave; the mixed state; critical currents of type-II superconductors; and high-temperature superconductors. This book will be of interest to practitioners in the fields of superconductivity and solid-state physics.


Electrodynamics of High-temperature Superconductors

Electrodynamics of High-temperature Superconductors
Author: Alan M. Portis
Publisher: World Scientific
Total Pages: 260
Release: 1993
Genre: Technology & Engineering
ISBN: 9789810212483

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These lectures are concerned with the application of high temperature superconductors to both passive and active high-frequency devices.The central issue addressed is the electrodynamics of granular superconductors, particularly where grain boundaries (either natural or synthetic) act as Josephson weak-links. Grain boundaries are responsible for residual dissipation and for unwanted dependence of the electromagnetic properties on ambient magnetic fields and on elevated power level. Properly controlled, similar weak-links are the key to high sensitivity dc and rf SQUIDS at readily accessible temperatures, and to modulators, mixers and detectors. Such structures may conveniently lead to superconductive electronic devices as well as coherent sources of radiation in the very far infrared.


Electrodynamics of Solids and Microwave Superconductivity

Electrodynamics of Solids and Microwave Superconductivity
Author: Shu-Ang Zhou
Publisher: John Wiley & Sons
Total Pages: 652
Release: 1999-07-23
Genre: Technology & Engineering
ISBN: 9780471354406

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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.


Introduction to Superconductivity

Introduction to Superconductivity
Author: Michael Tinkham
Publisher: Courier Corporation
Total Pages: 482
Release: 2004-06-14
Genre: Science
ISBN: 0486435032

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Accessible to graduate students and experimental physicists, this volume emphasizes physical arguments and minimizes theoretical formalism. Topics include the Bardeen-Cooper-Schrieffer and Ginzburg-Landau theories, magnetic properties of classic type II superconductors, the Josephson effect, fluctuation effects in classic superconductors, high-temperature superconductors, and nonequilibrium superconductivity. 109 figures. 1996 edition.


The New Superconductors

The New Superconductors
Author: Frank J. Owens
Publisher: Springer Science & Business Media
Total Pages: 207
Release: 2006-04-11
Genre: Science
ISBN: 0306470691

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In The New Superconductors, Frank J. Owens and Charles P. Poole, Jr., offer a descriptive, non-mathematical presentation of the latest superconductors and their properties for the non-specialist. Highlights of this up-to-date text include chapters on superfluidity, the latest copper oxide types, fullerenes, and prospects for future research. The book also features many examples of commercial applications; an extensive glossary that defines superconductivity terms in clear language; and a supplementary list of readings for the interested lay reader.


The Physics of Superconductors

The Physics of Superconductors
Author: Karl-Heinz Bennemann
Publisher: Springer Science & Business Media
Total Pages: 1149
Release: 2011-06-27
Genre: Technology & Engineering
ISBN: 3642189148

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This is the second volume of a comprehensive two-volume treatise on superconductivity that represents the first such publication since the earlier widely acclaimed books by R. Parks. It systematically reviews the basic physics and recent advances in the field. Leading researchers describe the state of the art in conventional phonon-induced superconductivity, high-Tc superconductivity, and in novel superconductivity, including triplet pairing in the ruthenates. The second volume is largely concerned with novel superconductors, such as heavy-fermion metals and organic materials, and also includes granular superconductors. Important new results on current problems are presented in a manner designed to stimulate further research. Numerous illustrations, diagrams and tables make this book especially useful as a reference work for students, teachers and researchers. Volume 1 treats Conventional and High-Tc Superconductors (3-540-43883-1).


The Physics of Organic Superconductors and Conductors

The Physics of Organic Superconductors and Conductors
Author: Andrei Lebed
Publisher: Springer Science & Business Media
Total Pages: 754
Release: 2008-03-26
Genre: Technology & Engineering
ISBN: 3540766723

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This bang up-to-date volume contains the distilled wisdom of some of the world’s leading minds on the subject. Inside, there is a treasure trove of general (tutorial) and topical reviews, written by leading researchers in the area of organic superconductors and conductors. The papers hail from all over the world, as far afield as the USA and Australia. They cover contemporary topics such as unconventional superconductivity, non-Fermi-liquid properties, and the quantum Hall effect.


Antiferromagnetism, Confinement and Spin Response in the QED3 Effective Theory of High-temperature Superconductivity

Antiferromagnetism, Confinement and Spin Response in the QED3 Effective Theory of High-temperature Superconductivity
Author: Babak Hosseyni Seradjeh
Publisher:
Total Pages: 248
Release: 2006
Genre: Antiferromagnetism
ISBN:

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In this thesis, we study the effective theory of a phase-fluctuating d-wave superconductor at zero temperature, formulated by quantum electrodynamics in three space-time dimensions (QED3). This theory describes the quantum critical behaviour in underdoped high- temperature superconductors in terms of an emergent gauge field. The gauge field couples minimally to nodal spin degrees of freedom (spinons) at low energies. It is massive in the superconductor but exhibits Maxwell dynamics when superconductivity is destroyed by strong phase fluctuations of the Cooper pairs. We show that, when dynamical chiral symmetry breaking in QED3 is supplemented by residual interactions, namely, the velocity anisotropy around the nodes, short-range repulsion between electrons, and nonlinear effects of dispersion (all irrelevant for the critical behaviour itself), the loss of superconductivity gives rise to an antiferromagnetic state, in accord with observation. Then, we turn to the problem of confinement of spinons outside the superconducting phase. We assume that the gauge group is a compact U(1) and, thus, allows for monopole configurations. In the absence of fermions, the interaction between monopoles is Coulombic, monopoles form a free plasma, and static fermionic charge is confined for all values of the gauge coupling by a linear potential mediated by free monopoles. We show that this permanent confinement survives in the presence of dynamical fermionic matter. This work comprises three separate studies. We first support our claim, for relativistic fermions, by an electrostatic study of the monopole gas. This is backed up by a controlled renormalization group analysis on the equivalent sine-Gordon theory. In the second study, we extend these findings to the non-relativistic case, with a spinon Fermi surface. In the last study, we provide a variational approach to the problem, in agreement with our other works. Finally, we focus our attention on the more practical application of the QED3 theory to spin response in the superconductor, relevant for neutron scattering measurements. We show that the theory explains the observed spin gap numerically and the evolution of the response in energy and momenta qualitatively. We study the issue of resonance in these measurements by developing a formalism for exciton bound states.