FURTHER EVIDENCE FOR LINEARLY-DISPERSIVE COOPER PAIRS

Author:

DE LLANO M.12,VALENCIA J. J.23

Affiliation:

1. Texas Center for Superconductivity, University of Houston, Houston, TX 77204, USA

2. Instituto de Investigaciones en Materiales, UNAM, 04510 México, DF, Mexico

3. Universidad Autónoma de la Ciudad de México, México, San Lorenzo Tezonco, 09790 México, DF, Mexico

Abstract

A recent Bose–Einstein condensation (BEC) model of several cuprate superconductors is based on bosonic Cooper pairs (CPs) moving in 3D with a quadratic energy-momentum (dispersion) relation. The 3D BEC condensate-fraction versus temperature formula poorly fits penetration-depth data for two cuprates in the range 1/2<T/Tc≤1 where Tc is the BEC transition temperature. We show how these fits are dramatically improved, assuming cuprates to be quasi-2D, and how equally good fits are obtained for conventional 3D and quasi-1D nanotube superconducting data, provided the correct linear CP dispersion is assumed in BEC at their assumed corresponding dimensionalities. This is offered as additional concrete empirical evidence for linearly-dispersive pairs in another recent BEC scenario of superconductors within which a BCS condensate turns out to be a very special case.

Publisher

World Scientific Pub Co Pte Lt

Subject

Condensed Matter Physics,Statistical and Nonlinear Physics

Reference43 articles.

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2. J. R. Schrieffer, Theory of Superconductivity (Benjamin, New York, 1964) p. 33.

3. A. L. Fetter and J. D. Walecka, Quantum Theory of Many-Particle Systems (McGraw-Hill, New York, 1971) p. 336.

4. The Cooper pair dispersion relation

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