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Structure and superconducting properties of ((Ln(1-x)Ln*(x) 1/2 (Ba(1-y)Sr(y) 1/3 Ce 1/6) 8Cu6O(z)A variety of new oxide superconductors were prepared. The crystallographic structures of the oxides were all tetragonal and of the (Ln(+), Ce)4(Ln(+),Ba)4Cu6Oz (Ln(+) = Nd, Sm or Eu) type which had been previously discovered by Akimitsu et al. As the Sr content, y, increased when Ln = Ln(excited state) = Nd, the oxygen content, z, monotonically increased and the superconducting transition temperature, T(sub c), varied exhibiting a maximum. When z was controlled directly by means of high oxygen pressure sintering techniques, T(sub c) was changed accordingly. T(sub c's) of samples with different combinations of Ln and Ln(excited state) and different values of x and y were found to depend on the magnitude of the bond valence sum for a Cu atom located in the bottom plane of the Cu-O5 pyramid. Transport and magnetization measurements were carried out to investigate the magnetic field dependence of superconducting properties and to determine the phenomenological parameters. The Hall coefficients were positive below room temperature and varied yielding a maximum with respect to temperature.
Document ID
19900018517
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Yamauchi, H.
(International Superconductivity Technology Center Tokyo, Japan)
Wada, T.
(International Superconductivity Technology Center Tokyo, Japan)
Ichinose, A.
(International Superconductivity Technology Center Tokyo, Japan)
Taegashi, Y.
(International Superconductivity Technology Center Tokyo, Japan)
Kaneko, T.
(International Superconductivity Technology Center Tokyo, Japan)
Ikegawa, S.
(International Superconductivity Technology Center Tokyo, Japan)
Tanaka, Shoji
(International Superconductivity Technology Center Tokyo, Japan)
Date Acquired
September 6, 2013
Publication Date
April 1, 1990
Publication Information
Publication: NASA, Goddard Space Flight Center, AMSAHTS 1990: Advances in Materials Science and Applications of High Temperature Superconductors
Subject Category
Solid-State Physics
Accession Number
90N27833
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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