Published August 1996 | Version v1
Journal article

Magneto-transport study of a Bi2223 superconductor produced by a high-pressure method

  • 1. SUPRAS Institut de Physique, Universite de Liege, B-4000 Liege (Belgium)
  • 2. Department of Chemistry, University of Warsaw, Al. Zwirki i Wigury 101, Pl-02-089 Warsaw (Poland)
  • 3. Istituto de Richerche Tecnologiche per la Ceramica, CNR, 48018 Faenza (Italy)

Description

Various physical properties of a high-pressure made ceramic have been Bi1.84Pb0.34Sr191Ca2.03Cu3.06Ox studied in the normal state and mixed state region, mainly from the point of view of transport properties. The electrical resistivity, the thermoelectric power and the Nernst effect are reported for a broad temperature range and for fields between 0 and 4 T. Derived physical parameters like the excess (integrated) properties, the behaviour of the percolation line(s) as a function of temperature and field, the so-called transport energy, and the so-called activation energies, the Ginzburg-Landau parameter and the thermal Hall angle field and temperature dependence are given and briefly compared with previous reports. We point out that in the region examined, the so-called percolation lines differ whether the transport coefficient is purely electrical or is electrothermal in nature. We point out that the 90 deg. thermal Hall angle temperature is the same as the thermoelectric percolation temperature. Finally we examine for the first time in such systems the behaviour of the so-called 'electrothermal conductivity'. Through a kinetic formalism using either an s-wave or a d-wave-like order parameter, we point out that the field dependence is quite different in the mixed state near the critical temperature. This allowed us to decide that the signature for a d-wave nature of the gap parameter exists for such transport properties near the critical temperature. (author)

Availability note (English)

Available online at the Web site for the journal Superconductor Science and Technology (ISSN 1361-6668) http://www.iop.org/

Additional details

Identifiers

Publishing Information

Journal Title
Superconductor Science and Technology
Journal Volume
9
Journal Issue
8
Journal Page Range
p. 644-652
ISSN
0953-2048

Optional Information

Notes
An erratum for this article has been published in 1996 Supercond. Sci. Technol. 9 1109