Publication | Open Access
A Strategy to Create Spin-Split Metallic Bands on Silicon Using a Dense Alloy Layer
72
Citations
26
References
2014
Year
Magnetic PropertiesEngineeringSpin-charge ConversionSpin SystemsSpin TexturesMagnetic ResonanceSpintronic MaterialSpin DynamicMagnetic MaterialsSpin PhenomenonMagnetismLow-dimensional SpintronicsSpin-split Metallic BandsMetallic Functional MaterialSilicon SurfaceQuantum MaterialsRashba EffectMagnetic Topological InsulatorMaterials EngineeringMaterials ScienceSpin-charge-orbit ConversionSpin-orbit EffectsPhysicsMicroelectronicsQuantum MagnetismMagnetic MediumSpintronicsNatural SciencesCondensed Matter PhysicsApplied PhysicsMagnetic DeviceDense Alloy LayerDense 2D
To exploit Rashba effect in a 2D electron gas on silicon surface for spin transport, it is necessary to have surface reconstruction with spin-split metallic surface-state bands. However, metals with strong spin-orbit coupling (e.g., Bi, Tl, Sb, Pt) induce reconstructions on silicon with almost exclusively spin-split insulating bands. We propose a strategy to create spin-split metallic bands using a dense 2D alloy layer containing a metal with strong spin-orbit coupling and another metal to modify the surface reconstruction. Here we report two examples, i.e., alloying reconstruction with Na and Tl/Si(111)1 × 1 reconstruction with Pb. The strategy provides a new paradigm for creating metallic surface state bands with various spin textures on silicon and therefore enhances the possibility to integrate fascinating and promising capabilities of spintronics with current semiconductor technology.
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