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- W3149230892 abstract "The electronic structures of amorphous Nb/sub 100/minus//ital x//Ni/sub /ital x// (/ital x/=65, 59.8, 56.4) alloys are studied by means of UV-photoelectron spectroscopy (UPS). It is found that the Fermi level is located near the minimum of the density of states, which explains the double Curie-point phenomena in Nb-Ni alloys. Analyzing the electron structure of Nb-Ni alloys, it is pointed out that the hybridization of two /ital d/-bands with energies close to each other may form a new hybridized band near /ital E//sub /ital F// and the hybridization is related to the valence difference. The charge transfer causes the peaks of the bands to shift. The density of states of /ital T//sub /ital E//-/ital T//sub /ital L// alloys at /ital E//sub /ital F// should include two contributions, i.e., that from 3/ital d/ electron states, which is of advantage to magnetism, and that from 4/ital d/ electron states, being of advantage to superconductivity. Different ratios of these contributions at /ital E//sub /ital F// greatly influence the magnetism and superconductivity of the alloys. The coexistence of localized magnetic moments and superconductivity has also been discussed." @default.
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- W3149230892 date "1989-04-01" @default.
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- W3149230892 title "The electronic structure, magnetism, and superconductivity of amorphous Nb-Ni alloys" @default.
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