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Thursday, April 16, 2020 | History

4 edition of Electrodynamics of high-temperature superconductors found in the catalog.

Electrodynamics of high-temperature superconductors

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Published by World Scientific in Singapore, River Edge, N.J .
Written in English

    Subjects:
  • High temperature superconductors.,
  • Electrodynamics.

  • Edition Notes

    Includes bibliographical references and index.

    StatementAlan M. Portis.
    SeriesLecture notes in physics ;, v. 48, World Scientific lecture notes in physics ;, v. 48.
    Classifications
    LC ClassificationsQC611.98.H54 P67 1992
    The Physical Object
    Paginationvii, 247 p. :
    Number of Pages247
    ID Numbers
    Open LibraryOL1738343M
    ISBN 109810212151, 9810212488
    LC Control Number92043560

    With their zero electrical resistance and remarkable magnetic and thermal conductive properties, superconductors have the potential to revolutionize numerous technologies. The trouble is, they. Superconductors don’t waste energy in the form of heat. The problem with the current crop of superconductors is that they require chilling, which adds weight, bulk and expense.


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Electrodynamics of high-temperature superconductors by Alan M. Portis Download PDF EPUB FB2

Electrodynamics of High Temperature Superconductors will be of great value to practical specialists who wish to make devices or measurements using the electrodynamic properties of these It is carefully and thoroughly grounded in the known and is a workmanlike job.".

Get this from a library. Electrodynamics of high-temperature superconductors. [Alan M Portis] -- These lectures are concerned with the application of high temperature superconductors to both passive and active high-frequency devices. The central issue addressed is. Electrodynamics of High Temperature Superconductors will be of great value to practical specialists who wish to make devices or measurements using the electrodynamic properties of these materials.

It is carefully and thoroughly grounded in the known and is a workmanlike job.”. An alternate set of equations to describe the electrodynamics of superconductors at a macroscopic level is proposed.

These equations resemble equations originally proposed by the London brothers. The interplay between charge, spin and superconducting fluctuations in the cuprate high-temperature superconductors has been experimentally documented with nuclear magnetic resonance (NMR) 1.

Electrodynamic Theory of Superconductors is the first book of its kind. It gives a unified and comprehensive theoretical treatment of electromagnetic, thermal and mechanical phenomena in superconductors.

Basic concepts and principles in continuum electrodynamics are introduced, with particular emphasis on by: Best Sellers in Superconductivity #1. Flash Cards of American Sign Language High-Temperature Superconductors (Springer Series in Materials Science) Ajay Kumar Saxena. Hardcover. Drivers Permit & License Study Book With Over Drivers test questions for Pennsylvania DMV written Exam for Electrodynamics of high-T c superconductors D.

Basov Department of Physics, University of California San Diego, La Jolla, CaliforniaUSA T. Timusk Department of Physics and Astronomy, McMaster University, Hamilton, Ontario, Canada L8S 4M1 Published 26 August Recent studies of the electromagnetic response of high-T.

High-temperature superconductors (abbreviated high-T c or HTS) are operatively defined as materials that behave as superconductors at temperatures above nearly °C ( °F). This is in fact the lowest temperature reachable by liquid nitrogen, one of the simplest coolants in cryogenics.

All superconducting materials known at ordinary pressures currently work far. Recently discovered high‐temperature oxide superconductors are examples of such superconductors, having the upper critical magnetic field on the order of hundreds of tesla. Since the discovery of type II superconductors, which can maintain their superconducting state in very strong magnetic fields, large‐scale applications of.

Recommended Citation: U.S. Congress, Office of Technology Assessment, High-Temperature Superconductivity in Perspective, OTA-E(Washington, DC: U.S.

Government Printing Office, April ). For sale by the Superintendent of Documents U.S. Government Printing Office, Washington, DC   2. Introduction to Electrodynamics of Superconductors 3. The BCS Theory 4. Ginzburg-Landau Theory 5.

Magnetic Properties of Classic Type II Superconductors 6. Josephson Effect I: Basic Phenomena and Applications 7. Josephson Effect II: Phenomena Unique to Small Junctions 8. Fluctuation Effects in Classic Superconductors 9. The High-Temperature Brand: Dover Publications.

Introduction to Superconductivity differs from the first edition chiefly in Chap 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.

Concepts in High Temperature Superconductivity. The purpose of this paper to explore the theory of high temperature superconductivity.

The main focus is on the core theoretical issues associated with the mechanism of high temperature superconductivity more generally. Author(s): E. Carlson, V. Emery, S.A. Kivelson and D. Orgad. Applied Superconductivity.

This note provides a phenomenological approach to superconductivity, with emphasis on superconducting electronics. Topics covered include: electrodynamics of superconductors, London's model, flux quantization, Josephson Junctions, superconducting quantum devices, equivalent circuits, high-speed superconducting electronics, and quantized.

Additional subjects include magnetic properties of classic type II superconductors; the Josephson effect (both in terms of basic phenomena and applications and of the phenomena unique to small junctions); fluctuation effects in classic superconductors; the high-temperature superconductors; special topics (such as the Bogoliubov method, magnetic.

This Book; Anywhere; Quick Search in Books. World Scientific Lecture Notes in Physics Electrodynamics of High Temperature Superconductors, pp. () No Access.

Electrodynamics of High Temperature Superconductors. Metrics. Downloaded 9 times History. Loading Close Figure Viewer.

Since the s, a general theme in the study of high-temperature superconductors has been to test the BCS theory and its predictions against new data. At the same time, this process has engendered new physics, new materials, and new theoretical frameworks.

Remarkable advances have occurred in. Superconductivity is the set of physical properties observed in certain materials, wherein electrical resistance vanishes and from which magnetic flux fields are expelled.

Any material exhibiting these properties is a an ordinary metallic conductor, whose resistance decreases gradually as its temperature is lowered even down to near absolute zero, a. Starting from the well-known characteristics of conventional superconductors, described in Sect. the new phenomena observed in high-temperature superconductors are considered.

The complexity of the physical properties of the cuprate superconductors is closely related to the fact that these materials are close to a metal–insulator Cited by: 2.

2) BCS Superconductors book for the group, please send me a purchase order. When the book arrives simply write “Superconductivity.

Physica C () North-Holland Low-field electrodynamics of high-Tc superconductors - theory and experiment S.L. Ginzburg, V.P.

Khavronin, Logvinova and I.D. Luzyanin Leningrad Nuclear Physics Institute, Gatchina, LeningradUSSR J. Herrmann, B. Lippold, H. Bner and H. Schmiedel Karl Marx University, Section of Physics, Cited by: High Temperature Superconductivity M.

Brian Maple Department of Physics and Institute for Pure and Applied Physical Sciences University of California, San Diego, La Jolla, CaliforniaUSA Abstract The current status of basic research on the high temperature cuprate superconductors and prospects for technological applications of these Cited by: Cite this chapter as: Bonn D.A., Hardy W.N.

() Microwave Electrodynamics of High Temperature Superconductors. In: Schrieffer J.R., Brooks J.S. (eds) Handbook of Cited by: 8. The following sections are included: * Introduction * Electrodynamics of Superconductors * Local Electrodynamics * Two Fluid Models * BCS Theory * Penetration Depth * Measurement Methods * Single Crystal Methods * Thin Film Methods * Penetration Depth of YBa 2 Cu 3 O 7-δ * Region Near Tc * Low Temperatures * Impurity Effects * Penetration Depth Anisotopy *.

Electrodynamic Theory of Superconductors is the first book of its kind. It gives a unified and comprehensive theoretical treatment of electromagnetic, thermal and mechanical phenomena in superconductors.

Basic concepts and principles in continuum electrodynamics are introduced, with particular emphasis on methodology. Well known for its accessibility to graduate students and experimental physicists, this volume emphasizes physical arguments and minimizes theoretical formalism.

The second edition of this classic text features revisions by the author that improve its user-friendly qualities, and an introductory survey of latter-day developments in classic superconductivity enhances /5(2). High temperature superconductors have received a great deal of attention in recent years, due to their potential in device and power applications.

This book summarises the materials science and physics of all the most important high temperature superconductors as well as discussing material growth, properties and applications. Download Introduction-to-superconductivity ebook PDF or Read Online books the text proceeds with an introduction to the electrodynamics of superconductors and presents expositions of the Bardeen-Cooper-Schrieffer theory and the Ginzburg-Landau theory.

and high-temperature superconductors. This book will be of interest to practitioners. Concepts in High Temperature Superconductivity E. Carlson, V. Emery, S. Kivelson, D. Orgad It is the purpose of this paper to explore the theory of high temperature superconductivity. Much of the motivation for this comes from the study of the cuprate high temperature superconductors.

However, our primary focus is on the. High-temperature superconductors are materials that become superconducting at temperatures well above a few kelvin. The critical temperature T c is the temperature below which a material is superconducting.

Some high-temperature superconductors have verifiedT c s above K, and there are reports of T c s as high as K. The Crystal Structures of Bi(n 1)n High-Temperature Superconductors The Crystal Structures of Tl-based High-Temperature Superconductors The Crystal Structures of Hg-based High-Temperature Superconductors Lattice Parameters of Cuprate Superconductors References ; 7.

@article{osti_, title = {Surface impedance of high-Tc superconductors}, author = {Gruner, G.}, abstractNote = {I discuss the various experiments which give information on the surface impedance Zs = Rs + jXs of high temperature superconductors.

The surface reactance Xs is related to the penetration depth and Xs(T) is suggestive for singlet pairing. Electron-Phonon Coupling and High Temperature Superconductivity Summary Bibliography 4 Microwave Electrodynamics of High Temperature Superconductors D.

Bonn and W. Hardy Introduction Electrodynamics of Superconductors London Theory Surface Impedance Approximation "Electrodynamics of High-Temperature Superconductors," by Alan M.

Portis, (World Scientific, Singapore, ). An excellent overview of both fundamental and applied aspects of microwaveFile Size: KB. Low Temperature Superconductivity. LTS stands for “low temperature superconductor,” which typically refers to the Nb-based alloy (most commonly Nbwt.%Ti) and A15 (Nb3Sn and Nb3Al) superconductors in use prior to the discovery of “high temperature” oxide superconductors in.

Author: V.P. Mineev,K Samokhin,L. Landau,L D Landau; Publisher: CRC Press ISBN: Category: Science Page: View: DOWNLOAD NOW» Unconventional superconductivity (or superconductivity with a nontrivial Cooper pairing) is believed to exist in many heavy-fermion materials as well as in high temperature superconductors, and is a.

High-Temperature Superconductivity: History and Outlook Fig. 1 Low-temperature Resistivity of a Ba-doped LaCuO 3 Sample with x (Ba)=, Recorded for Different Current Densities Fig.

2 Temperature Dependence of the Magnetic Susceptibility in Ba-doped La 2CuO 4 A/cm2 0 A/cm2 A/cm2 0 T(K) ρ. For normal pressures, °C is near the upper limit. Unfortunately, high-temperature superconductors—which require relatively cheap liquid nitrogen, rather than liquid helium, to cool—are mostly brittle ceramics, which are expensive to form into wires and have limited application.

A much-needed update on complex high-temperature superconductors, focusing on materials aspects; this timely book coincides with a recent major break-through of the discovery of iron-based superconductors.&#; It provides an overview of materials aspects of high-temperature Price: $.

This second edition features improvements by the author that enhance its user-friendliness and value as a reference. Starting with a historical overview, the text proceeds with an introduction to the electrodynamics of superconductors and presents expositions of the Bardeen-Cooper-Schrieffer and Ginzburg-Landau theories.

Superconductivity: An Introduction, Edition 3 - Ebook written by Reinhold Kleiner, Werner Buckel. Read this book using Google Play Books app on your PC, android, iOS devices.

Download for offline reading, highlight, bookmark or take notes while you read Superconductivity: An Introduction, Edition 3.

Studies of the low-field electrodynamics of YBaCuO ceramic superconductors are described. An analytical treatment and a numerical simulation are carried out in the model of pinning and viscous flow of hypervortices in high-T c superconductors (HTSCs) to find the dependence of the real and imaginary components of the surface impedance on the modulus Cited by: 3.