Absolute band mapping by combined angle-dependent very-low-energy electron diffraction and photoemission: Application to Cu

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Abstract

We present an experimental method to determine the electronic E(k) band structure in crystalline solids absolutely, i.e., with complete control of the three-dimensional wave vector k. Angle-dependent very-low-energy electron diffraction is first applied to determine the unoccupied states whose k is located on a high-symmetry line parallel to the surface. Photoemission via these states, employing the constant-final-state mode, is then utilized to map the valence bands along this line. We demonstrate the method by application to Cu, and find significant deviation from free-electron-like behavior in the unoccupied states, and from density-functional theory in the occupied states. © 1998 The American Physical Society.

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Strocov, V. N., Claessen, R., Nicolay, G., Hüfner, S., Kimura, A., Harasawa, A., … Blaha, P. (1998). Absolute band mapping by combined angle-dependent very-low-energy electron diffraction and photoemission: Application to Cu. Physical Review Letters, 81(22), 4943–4946. https://doi.org/10.1103/PhysRevLett.81.4943

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