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- W2071501847 abstract "Fermi-level pinning by empty surface states was observed on clean $n$-type InP using photoemission. Exposure to up to ${10}^{7}$ langmuirs (1 L = ${10}^{ensuremath{-}6}$ Torrsec) of oxygen did not remove the pinning. The Cs-InP Schottky-barrier pinning position showed good correlation with the pinning on the clear surface; however, the Cs-InP interaction was complex. The detailed movement of the Fermi level with increasing Cs coverage was complicated and could not be explained simply in terms of filling of empty surface states by Cs electrons. In addition, a large movement of the upper edge of the photoelectron energy distribution curves, that is, the valence-band edge at the Cs-InP interface, into the bulk band gap was observed. Thus, while empty surface states may be important in determining the Fermi-level pinning in Schottky barriers, other interactions will also have to be considered." @default.
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- W2071501847 date "1976-05-15" @default.
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- W2071501847 title "Photoemission studies of surface states and Schottky-barrier formation on Inp" @default.
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- W2071501847 doi "https://doi.org/10.1103/physrevb.13.4439" @default.
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