Publication | Open Access
Scanning tunneling microscopy current from localized basis orbital density functional theory
23
Citations
25
References
2016
Year
EngineeringMicroscopyElectronic StructureTunneling MicroscopyElectron MicroscopyQuantum MaterialsTotal Dft PotentialCharge Carrier TransportSurface ReconstructionMaterials SciencePhysicsMicroanalysisPhysical ChemistryLocalized Orbital DescriptionQuantum ChemistryNatural SciencesScanning Probe MicroscopySurface ScienceApplied PhysicsCondensed Matter PhysicsSurface AnalysisCarbon Monoxide
We present a method capable of calculating elastic scanning tunneling microscopy (STM) currents from localized atomic orbital density functional theory (DFT). To overcome the poor accuracy of the localized orbital description of the wave functions far away from the atoms, we propagate the wave functions, using the total DFT potential. From the propagated wave functions, the Bardeen's perturbative approach provides the tunneling current. To illustrate the method we investigate carbon monoxide adsorbed on a Cu(111) surface and recover the depression/protrusion observed experimentally with normal/CO-functionalized STM tips. The theory furthermore allows us to discuss the significance of $s$- and $p$-wave tips.
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