Physical review. B, Condensed matter · 1997 · 40 citations · 33 references
EngineeringElectron DiffractionElectronic StructureMonatomic StepsElectron SpectroscopyElectronic StatesBulk Band GapMaterials SciencePhysicsPhotoelectric MeasurementQuantum ChemistryTwo-photon Photoemission StudiesStepped CuSolid-state PhysicSurface CharacterizationTransition Metal ChalcogenidesBand StructureNatural SciencesSurface ScienceApplied PhysicsCondensed Matter PhysicsSurface Analysis
The electronic structure of three surface or near-surface states on stepped Cu(775) has been investigated using angle-resolved, resonant, two-photon photoemission. Since the electron wave function in each of these electronic states has a different average distance from the crystal plane, the measurement allowed the step potential at each distance to be sampled. The energy dispersion of the $n=1$ image-potential state was found to be oriented by the (111) terrace and the $n=2$ state was oriented by the (775) surface plane. The band structure of the embedded $\mathrm{sp}$-like surface state $(n=0)$ was determined by the projection of the bulk band gap onto Cu(775).
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