Publication | Open Access
Tuning of energy levels and optical properties of graphene quantum dots
349
Citations
24
References
2008
Year
EngineeringGqds ExhibitGraphene NanomeshesOptical PropertiesNanoelectronicsQuantum DotsEnergy LevelsNanophotonicsMaterials ScienceZigzag GqdsPhysicsNanotechnologyGraphene Quantum DotsGraphene Quantum DotNanomaterialsApplied PhysicsCondensed Matter PhysicsGrapheneGraphene NanoribbonMagnetic Levels
We investigate theoretically the magnetic levels and optical properties of zigzag- and armchair-edged hexagonal graphene quantum dots (GQDs) utilizing the tight-binding method. A bound edge state at zero energy appears for the zigzag GQDs in the absence of a magnetic field. The magnetic levels of GQDs exhibit a Hofstadter-butterfly spectrum and approach the Landau levels of two-dimensional graphene as the magnetic field increases. The optical properties are tuned by the size, the type of the edge, and the external magnetic field.
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