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Sunday, May 17, 2020 | History

1 edition of High-temperature superconductivity found in the catalog.

High-temperature superconductivity

High-temperature superconductivity

abstracts of NIST publications, 1987-1988

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  • 37 Currently reading

Published by National Institute of Standards and Technology in Washington, D.C .
Written in English


Edition Notes

Statementedited by Mary E. DeWeese, Robert A. Kamper and Ronald M. Powell.
SeriesNIST special publication -- 759
ContributionsDeWeese, Mary E., Kamper, Robert A., Powell, Ronald M., National Institute of Standards and Technology.
ID Numbers
Open LibraryOL18781578M

The discovery of superconductivity at ~30 K in the La-Ba-Cu-O system by Bednorz and Müller in [1] ignited an explosion of interest in high temperature superconductivity. These initial developments rapidly evolved into an intense worldwide research effort that still persists after more than a decade, fueled by the fact that highCited by: Concepts in High Temperature Superconductivity E. W. Carlson, V. J. Emery, S. A. 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.

many attempts to obtain high-temperature superconductivity in materials other than cuprates. Superconductivity was observed in alkali-ion doped C 60 at 33 K 10), and Akimitsu very recently found superconductivity in MgB 2 at of 39 K 11). But the superconductivity in both these materials is explained by the BCS theory. The history of superconductivity dates to , when Heike Kamerlingh Onnes discovered the property in mercury that had been cooled to −° Celsius (about −° Fahrenheit).. But the field took a giant leap in the mid s. That’s when J. Georg Bednorz and K. Alex Müller, playing with a class of materials overlooked by other scientists, discovered a copper oxide compound able .

In contrast to research on the fundamental mechanisms of High-Temperature Superconductivity, in recent years we have seen enormous developments in the fabrication and application of High-Tc-superconductors. The two volumes of High Temperature Superconductivity provide a survey of the state of the technology and engineering applications of these materials. Find many great new & used options and get the best deals for High Temperature Superconductivity 1: Materials (, Hardcover) at the best online prices at eBay! Free shipping for many products!


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Andrew Jordan. Sven Badoux, Wojciech Tabis, Francis Laliberté, Gaël Grissonnanche, Baptiste Vignolle, David Vignolles, Jerome Béard, Douglas Bonn, Walter Hardy, Ruixing Liang, Nicolas Doiron-Leyraud, Louis Taillefer, and Cyril Proust, “Change of a Carrier Density at the Pseudogap Critical Point of a Cuprate Superconductor,” Nature.

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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. @article{osti_, title = {High-temperature superconductivity}, author = {Burns, G.}, abstractNote = {Review of conventional superconductors. Structures. Normal-state properties. Superconducting properties. Vortex behavior, J[sub c], and applications.

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You submitted the following rating and review. We'll publish them on our site once we've reviewed : Springer Japan.High-Temperature Superconductivity In Perspective Project Staff Lionel S. Johns, Assistant Director, OTA Energy, Materials, and International Security Division Peter D.

Blair, Energy and Materials Program Manager Gregory Eyring, Project Director Laurie Evans Gavrin, Analyst Jane A. Alexander, Analyst Administrative Staff.