Knight shift in superconducting oxides BaPb1−xBixO3 (x < 0.35)

被引:0
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作者
V. V. Ogloblichev
A. V. Pogudin
Yu. V. Piskunov
S. V. Verkhovskii
A. Yu. Yakubovsky
A. Trokiner
机构
[1] Russian Academy of Sciences,Institute of Metal Physics, Ural Division
[2] Russian Research Centre Kurchatov Institute,Laboratorie de Physique du Solide
[3] E.S.P.C.I.,undefined
关键词
74.70.−b; 76.60.−k;
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摘要
The Knight shift 207Ks for the 207Pb nuclei in the metal phase of the oxides BaPb1−xBixO3 (x < 0.35) has been analyzed as a function of the concentration. The shift, which is proportional to the density of states near the Fermi energy: 207Ks ∼ N(EF), reaches a maximum for an oxide with the maximum superconducting transition temperature Tc(x ≈ 0.25) = 12 K. A significant increase in the width of the shift distribution with the Bi concentration testifies to the formation of a nonuniform state of the electronic system in the conduction band of superconducting oxides, which is accompanied by an increase in short-wavelength contributions to the spin susceptibility. To detect the 207Pb NMR spectra in superconducting oxides with x > 0.2, the 17O-207Pb spin-echo double-resonance method is used, which provides successful detection of the 207Pb NMR signal with an anomalously high rate of spin-spin relaxation T2−1 > 500 ms−1. Thus, fundamental restrictions arising in investigations of rapidly relaxing 207Pb nuclei, which are “unobservable” in superconducting oxides BaPb1−xBixO3 when they are studied by traditional single-resonance methods of pulse NMR spectroscopy, have been overcome.
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页码:81 / 85
页数:4
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