Physical Review Letters · 2004 · 214 citations · 20 references
EngineeringElectron DiffractionChemistryA PeriodicityHexagonal ArraysTunneling MicroscopyElectron SpectroscopySuperconductivityUltracold AtomAtomic SuperlatticeSurface ReconstructionMaterials ScienceQuantum SciencePhysicsNanotechnologyTwo-dimensional Electron SeaAtomic PhysicsQuantum ChemistrySurface CharacterizationCerium AdatomsNatural SciencesSurface AnalysisSurface ScienceCondensed Matter PhysicsApplied PhysicsMetallic Adatoms
Cerium adatoms, deposited on a Ag(111) surface, are found by low-temperature scanning tunneling microscopy to self-assemble into large ordered hexagonal arrays covering macroscopically the entire surface. We show that the 32 A periodicity of the superlattice is caused by the interaction of surface-state electrons with Ce adatoms and that the large-scale formation of the superlattice is governed by a subtle balance between the sample temperature, the surface diffusion barrier, and the concentration-dependent adatom interaction potential.
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