Graphene with its dispersion relation resembling that of photons offers ample opportunities for applications in electron optics. The spacial variation of carrier density by external gates can be used to create electron waveguides, in analogy to optical fiber, with additional confinement of the carriers in bipolar junctions leading to the formation of few transverse guiding modes. We show that waveguides created by gating graphene with carbon nanotubes (CNTs) allow obtaining sharp conductance plateaus, and propose applications in the Aharonov-Bohm and two-path interferometers, and a pointlike source for injection of carriers in graphene. Other applications can be extended to Bernal-stacked or twisted bilayer graphene or two-dimensional elect...
The analogy between the electron wave nature in graphene electronics and the electromagnetic waves i...
Kim* The observation of quantum conductance oscillations in mesoscopic systems has traditionally req...
Graphene features topological edge bands that connect the pair of Dirac points through either sector...
Abstract: Designing high-finesse resonant cavities for electronic waves faces challenges due to shor...
Graphene has recently become the focus of enormous attention for experimentalists and theorists alik...
Graphene nanoribbons (GNRs) are natural waveguides for electrons in graphene. Nevertheless, unlike m...
Exploiting the light-like properties of carriers in graphene could allow extreme non-classical forms...
This is the final version. Available from the American Physical Society via the DOI in this record. ...
The ability to detect and distinguish quantum interference signatures is important for both fundamen...
Electrons in graphene can show diffraction and interference phenomena fully analogous to light thank...
Quantum-mechanical calculations of electron magneto-transport in ideal graphene nanoribbons are pres...
Electrons in graphene can show diffraction and interference phenomena fully analogous to light thank...
The low-energy electronic excitations in graphene are described by massless Dirac fermions that have...
Graphene plasmons are able to become the fundermental of novel conceptual photonic devices, resultin...
Graphene and carbon nanotubes are the two-dimensional and one-dimensional forms of carbon allotropes...
The analogy between the electron wave nature in graphene electronics and the electromagnetic waves i...
Kim* The observation of quantum conductance oscillations in mesoscopic systems has traditionally req...
Graphene features topological edge bands that connect the pair of Dirac points through either sector...
Abstract: Designing high-finesse resonant cavities for electronic waves faces challenges due to shor...
Graphene has recently become the focus of enormous attention for experimentalists and theorists alik...
Graphene nanoribbons (GNRs) are natural waveguides for electrons in graphene. Nevertheless, unlike m...
Exploiting the light-like properties of carriers in graphene could allow extreme non-classical forms...
This is the final version. Available from the American Physical Society via the DOI in this record. ...
The ability to detect and distinguish quantum interference signatures is important for both fundamen...
Electrons in graphene can show diffraction and interference phenomena fully analogous to light thank...
Quantum-mechanical calculations of electron magneto-transport in ideal graphene nanoribbons are pres...
Electrons in graphene can show diffraction and interference phenomena fully analogous to light thank...
The low-energy electronic excitations in graphene are described by massless Dirac fermions that have...
Graphene plasmons are able to become the fundermental of novel conceptual photonic devices, resultin...
Graphene and carbon nanotubes are the two-dimensional and one-dimensional forms of carbon allotropes...
The analogy between the electron wave nature in graphene electronics and the electromagnetic waves i...
Kim* The observation of quantum conductance oscillations in mesoscopic systems has traditionally req...
Graphene features topological edge bands that connect the pair of Dirac points through either sector...