We present a tight-binding theory of triangular graphene quantum dots (TGQD) with zigzag edge and broken sublattice symmetry in an external magnetic field. The lateral size quantization opens an energy gap, and broken sublattice symmetry results in a shell of degenerate states at the Fermi level. We derive a semianalytical form for zero-energy states in a magnetic field and show that the shell remains degenerate in a magnetic field, in analogy to the zeroth Landau level of bulk graphene. The magnetic field closes the energy gap and leads to the crossing of valence and conduction states with the zero-energy states, modulating the degeneracy of the shell. The closing of the gap with increasing magnetic field is present in all graphene quantum...
We demonstrate that in triangular graphene quantum dots with zigzag edges (TGQD), robust optical tra...
This article also appears in: 60 years of pss Hot Topic: Magnetic Materials.Herein, two different ty...
Experimental challenges in identifying various types of magnetic ordering in graphene quantum dots (...
We present a tight-binding theory of triangular graphene quantum dots (TGQD) with zigzag edge and br...
The magnetic field dependence of energy levels in gapped single- and bilayer graphene quantum dots (...
We derive analytical solutions for the zero-energy states of degenerate shell obtained as a singular...
We investigate theoretically the magnetic levels and optical properties of zigzag- and armchair-edge...
We present the results of ab initio calculations of the effect of reconstruction and passivation of ...
In this paper, we investigate the low-lying energy levels of the two-dimensional parabolic graphene ...
Using the tight-binding approximation we calculated the diamagnetic susceptibility of graphene quant...
We study the energy levels of charge carriers confined in a magnetic quantum dot in graphene surroun...
When a Dirac electron is confined to a triangular graphene quantum dot with zigzag edges, its low-en...
We present a theory of electronic properties of gated triangular graphene quantum dots with zigzag e...
A semiclassical approach is used to investigate the physics of electrons confined in a graphene quan...
We characterize the confinement of massless Dirac electrons under axially symmetric magnetic fields ...
We demonstrate that in triangular graphene quantum dots with zigzag edges (TGQD), robust optical tra...
This article also appears in: 60 years of pss Hot Topic: Magnetic Materials.Herein, two different ty...
Experimental challenges in identifying various types of magnetic ordering in graphene quantum dots (...
We present a tight-binding theory of triangular graphene quantum dots (TGQD) with zigzag edge and br...
The magnetic field dependence of energy levels in gapped single- and bilayer graphene quantum dots (...
We derive analytical solutions for the zero-energy states of degenerate shell obtained as a singular...
We investigate theoretically the magnetic levels and optical properties of zigzag- and armchair-edge...
We present the results of ab initio calculations of the effect of reconstruction and passivation of ...
In this paper, we investigate the low-lying energy levels of the two-dimensional parabolic graphene ...
Using the tight-binding approximation we calculated the diamagnetic susceptibility of graphene quant...
We study the energy levels of charge carriers confined in a magnetic quantum dot in graphene surroun...
When a Dirac electron is confined to a triangular graphene quantum dot with zigzag edges, its low-en...
We present a theory of electronic properties of gated triangular graphene quantum dots with zigzag e...
A semiclassical approach is used to investigate the physics of electrons confined in a graphene quan...
We characterize the confinement of massless Dirac electrons under axially symmetric magnetic fields ...
We demonstrate that in triangular graphene quantum dots with zigzag edges (TGQD), robust optical tra...
This article also appears in: 60 years of pss Hot Topic: Magnetic Materials.Herein, two different ty...
Experimental challenges in identifying various types of magnetic ordering in graphene quantum dots (...