Electronic States of K <sub> <i>x</i> </sub> C <sub>60</sub> : Insulating, Metallic, and Superconducting Character

P. J. Benning(University of Minnesota), José Luı́s Martins(University of Minnesota), J. H. Weaver(University of Minnesota), L. P. F. Chibante(Rice University), R. E. Smalley(Rice University)
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Abstract

The recent report of electrical conductivity in the alkali metal fullerides and the discovery of superconductivity at 18 K for KxC(60) has raised fundamental questions about the electronic states on either side of the Fermi level, their occupancy with K intercalation, and the mechanism of superconductivity. Direct photoemission evidence is presented of filling of bands derived from the lowest unoccupied molecular orbital as a function of K incorporation for the metallic and insulating phases. This filling is not rigid band-like, and it reflects disorder in the K sites. Theoretical analysis indicates that KxC(60) is a strong coupling superconductor, and we suggest that the enhanced electron-phonon interaction is related to the unique hybridization of the C sp-derived states.


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