Physical Review Letters · 2002 · 39 citations · 15 references
Submonolayer Coag/ruEngineeringTunneling MicroscopySurface AlloyAlloy Droplet StructureSurface ReconstructionMaterials ScienceMaterials EngineeringPhysicsAtomic StrainMetallurgical InteractionMicrostructureSurface CharacterizationMaterial AnalysisDislocation InteractionAtomic DisplacementsScanning Probe MicroscopySurface ScienceApplied PhysicsSurface AnalysisThin FilmsAlloy PhaseMechanics Of Materials
Annealed submonolayer CoAg/Ru(0001) films form an alloy with a structure that contains droplets of Ag surrounded by Co [G. E. Thayer, V. Ozolins, A. K. Schmid, N. C. Bartelt, M. Asta, J. J. Hoyt, S. Chiang, and R. Q. Hwang, Phys. Rev. Lett. 86, 660 (2001)]. To understand how surface stress contributes to the formation of this structure, we use scanning tunneling microscopy to extract atomic displacements at the boundaries between regions of Co and Ag. Comparing our measurements to Frenkel-Kontorova model calculations, we show how stress due to lattice mismatch contributes to the formation of the alloy droplet structure. In particular, we quantitatively evaluate how competing strain and chemical energy contributions determine surface structure.
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<i>Ab initio</i>molecular dynamics for liquid metals
Georg Kresse, J. Häfner · Physical review. B, Condensed matter · 1993 · 43.6K citations