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Theory Of High Temperature Superconductivity
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Flux quantization experiments indicate that the carriers, Cooper pairs (pairons), in the supercurrent have charge magnitude 2e, and that they move independently. Josephson interference in a Superconducting Quantum Int- ference Device (SQUID) shows that the centers of masses (CM) of pairons move as bosons with a linear dispersion relation. Based on this evidence we develop a theory of. Flux quantization experiments indicate that the carriers, Cooper pairs (pairons), in the supercurrent have charge magnitude 2e, and that they move independently. Josephson interference in a Superconducting Quantum Int- ference Device (SQUID) shows that the centers of masses (CM) of pairons move as bosons with a linear dispersion relation. Based on this evidence we develop a theory of superconductivity in conventional and mate- als from a unified point of view. Following Bardeen, Cooper and Schrieffer (BCS) we regard the phonon exchange attraction as the cause of superc- ductivity. For cuprate superconductors, however, we take account of both optical- and acoustic-phonon exchange. BCS started with a Hamiltonian containing "electron" and "hole" kinetic energies and a pairing interaction with the phonon variables eliminated. These "electrons" and "holes" were introduced formally in terms of a free-electron model, which we consider unsatisfactory. We define "electrons" and "holes" in terms of the cur- tures of the Fermi surface. "Electrons" (1) and "holes" (2) are different and so they are assigned with different effective masses: Blatt, Schafroth and Butler proposed to explain superconductivity in terms of a Bose-Einstein Condensation (BEC) of electron pairs, each having mass M and a size. The system of free massive bosons, having a quadratic dispersion relation: and moving in three dimensions (3D) undergoes a BEC transition at where is the pair density. Books, Science and Geography~~Physics~~Electricity, Electromagnetism & Magnetism, Theory Of High Temperature Superconductivity~~Book~~9781402001499~~Shigeji Fujita, Salvador Godoy, , , , , , , , , ,, [PU: Springer]

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Theory of High Temperature Superconductivity (Fundamental Theories of Physics) - S. Fujita; S. Godoy
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Flux quantization experiments indicate that the carriers, Cooper pairs (pairons), in the supercurrent have charge magnitude 2e, and that they move independently. Josephson interference in a Superconducting Quantum Int- ference Device (SQUID) shows that the centers of masses (CM) of pairons move as bosons with a linear dispersion relation. Based on this evidence we develop a theory of superconductivity in conventional and mate- als from a unified point of view. Following Bardeen, Cooper and Schrieffer (BCS) we regard the phonon exchange attraction as the cause of superc- ductivity. For cuprate superconductors, however, we take account of both optical- and acoustic-phonon exchange. BCS started with a Hamiltonian containing "electron" and "hole" kinetic energies and a pairing interaction with the phonon variables eliminated. These "electrons" and "holes" were introduced formally in terms of a free-electron model, which we consider unsatisfactory. We define "electrons" and "holes" in terms of the cur- tures of the Fermi surface. "Electrons" (1) and "holes" (2) are different and so they are assigned with different effective masses: Blatt, Schafroth and Butler proposed to explain superconductivity in terms of a Bose-Einstein Condensation (BEC) of electron pairs, each having mass M and a size. The system of free massive bosons, having a quadratic dispersion relation: and moving in three dimensions (3D) undergoes a BEC transition at where is the pair density. aerospace,atomic and nuclear physics,chemical,chemistry,dynamics,electrical and electronics,electricity,electromagnetism,engineering,mechanical Chemistry, Springer

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Theory of High Temperature Superconductivity:2001. Auflage S. Fujita, S. Godoy Theory of High Temperature Superconductivity:2001. Auflage S. Fujita, S. Godoy Bücher > Wissenschaft > Physik, Springer

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Details zum Buch
Theory of High Temperature Superconductivity
Autor:

Godoy, S.; Fujita, S.

Titel:

Theory of High Temperature Superconductivity

ISBN-Nummer:

The book describes all basic experimental facts about high temperature superconductivity of materials, with a critical temperature of 30 Kelvin and higher, and explains them microscopically starting with a Hamiltonian followed by step-by-step statistical mechanical calculations. All important theoretical formulas are derived without omitting steps and all basic questions are answered in a manner which is easy to understand. The book is therefore suitable as a textbook for a second-year graduate physics course. Many fresh, and some challenging, ideas are presented and researches in the field are invited to examine the text.

Detailangaben zum Buch - Theory of High Temperature Superconductivity


EAN (ISBN-13): 9781402001499
ISBN (ISBN-10): 1402001495
Gebundene Ausgabe
Erscheinungsjahr: 2001
Herausgeber: Springer-Verlag GmbH
404 Seiten
Gewicht: 0,742 kg
Sprache: eng/Englisch

Buch in der Datenbank seit 18.01.2008 12:30:26
Buch zuletzt gefunden am 09.05.2017 03:25:33
ISBN/EAN: 9781402001499

ISBN - alternative Schreibweisen:
1-4020-0149-5, 978-1-4020-0149-9


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