Published February 2000 | Version v1
Journal article

Hg0.95Re0.05Ba2Ca2Cu3O8+δ superconductor: sample preparation and transport properties under hydrostatic pressure

  • 1. Departamento de Fisica, Universidade Federal do Espirito Santo, Vitoria-ES, 29060-900 (Brazil)
  • 2. Centro Brasileiro de Pesquisas Fisicas, Rio de Janeiro, RJ 22290-180 (Brazil)
  • 3. Instituto de Ciencia de Materiales de Barcelona (CSIC), Bellaterra, E-08193 Barcelona (Spain)
  • 4. Instituto de Pesquisas Energeticas e Nucleares, USP, Sao Paulo, 05508-900 (Brazil)

Description

Samples of the Hg1-xRex Ba2 Ca2 Cu3 O8+δ superconductor (Hg, Re-1223), with low rhenium (Re) content (x=0.05), have been produced with the help of a novel thermobaric analysis technique which could monitor the total pressure inside the quartz tube during synthesis at high temperature. The sample quality was verified by means of Rietveld analysis of the x-ray diffraction data, and by ac susceptibility measurements. The formation and stability of the Hg, Re-1223 phase has also been investigated by varying the oxygen content of the Re0.05Ba2 Ca2Cu3O8+δ precursor, and the mercury filling factor (ffHg = 0.00 to 0.014 g cm-3). It was observed that the reduction of oxygen content in the precursor (Re0.05 Ba2 Ca2 Cu3 O8+δ) and the increase of the mercury partial pressure inside the quartz tube enhanced the yield of the superconductor phase. Resistance measurements as a function of temperature under hydrostatic pressure (0-1.0 GPa) show an increase in the superconducting transition temperature which can be fitted with a parabolic curve. The reduction of the lattice volume induced by external hydrostatic pressure is similar to the one induced by chemical pressure due to rhenium (Re) doping (0.00<x<0.10); however TC does not depend on the chemical pressure. This behaviour can be understood on the basis of the pressure-induced charge transfer model (PICTM) modified by Almasan et al. (author)

Additional details

Publishing Information

Journal Title
Superconductor Science and Technology (Online)
Journal Volume
13
Journal Issue
2
Journal Page Range
p. 140-147
ISSN
1361-6668

Optional Information

Notes
48 refs.; This record replaces 31030142