Temperature dependence of the magnetic anisotropy of metallic Y-Ba-Cu-O single crystals in the normal phase

M. Miljak, V. Zlatić, I. Kos, I. Aviani, A. Hamzić, and G. Collin
Phys. Rev. B 42, 10742 – Published 1 December 1990
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Abstract

The magnetic anisotropy measurements of metallic Y-Ba-Cu-O compounds in the normal phase reveal a temperature-dependent diamagnetic component of the susceptibility that increases with decreasing temperature. The temperature variation of the susceptibility anisotropy and its total change do not seem to be much affected by the presence of the superconductivity at some lower temperature and could not be accounted for by superconducting fluctuations. Rather, the data remind one of the behavior of some quasi-two-dimensional metals with anisotropic Fermi surfaces, reflecting the properties of the low-energy excitations in the normal phase. The anisotropy measurements above the bulk superconducting transition temperature Tc reveal the nonlinear effects, which are due to the onset of superconductivity in disconnected grains. The existence of a two-step transition, typical for granular superconductors, should be taken into consideration if the normal-phase susceptibility data are compared with the theoretical predictions in the vicinity of Tc.

  • Received 27 March 1990

DOI:https://doi.org/10.1103/PhysRevB.42.10742

©1990 American Physical Society

Authors & Affiliations

M. Miljak, V. Zlatić, I. Kos, and I. Aviani

  • Institute of Physics, University of Zagreb, Bijenička c 46, 41001 Zagreb, Yugoslavia

A. Hamzić

  • Department of Physics, Faculty of Science, Marulićev trg 19, 41001 Zagreb, Yugoslavia

G. Collin

  • Université Rene Descartes, 4 avenue de l’Observatoire, 75006 Paris, France

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Vol. 42, Iss. 16 — 1 December 1990

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