We investigate the electronic band structure and transport properties of periodically alternating mono- and bi-layer graphene superlattices (MBLG SLs). In such MBLG SLs, there exists a zero-averaged wave vector (zero-$\overline{k}$ ) gap that is insensitive to the lattice constant. This zero-$\overline{k}$ gap can be controlled by changing both the ratio of the potential widths and the interlayer coupling coefficient of the bilayer graphene. We also show that there exist extra Dirac points; the conditions for these extra Dirac points are presented analytically. Lastly, we demonstrate that the electronic transport properties and the energy gap of the first two bands in MBLG SLs are tunable through adjustment of the interlayer coupling and t...
The importance of controlling both the charge carrier density and the band gap of a semiconductor ca...
We study the transmission, transport and electronic structure properties of aperiodic Fibonacci mono...
We review recent work on superlattices in monolayer and bilayer graphene. We high-light the role of ...
We formulate a low energy effective Hamiltonian to study superlattices in bilayer graphene (BLG) usi...
We study the electronic and transport properties of a graphene-based superlattice theoretically by u...
We study the transmission, transport and electronic structure properties of monolayer Graphene Super...
Electrostatic superlattices have been known to significantly modify the electronic structure of low-...
We review the energy spectrum and transport properties of several types of one-dimensional superlatt...
The electronic structure of a graphene superlattice composed by two periodic regions with different ...
The properties of electronic transport in graphene superlattices which consist of symmetrical period...
The properties of electronic transport in graphene superlattices which consist of symmetrical period...
In this work, the impact of two-dimensional superlattices on the electronic band structure and elect...
In this work, the impact of two-dimensional superlattices on the electronic band structure and elect...
In this work, the impact of two-dimensional superlattices on the electronic band structure and elect...
We show that, if graphene is subjected to the potential from an external superlattice, a band gap de...
The importance of controlling both the charge carrier density and the band gap of a semiconductor ca...
We study the transmission, transport and electronic structure properties of aperiodic Fibonacci mono...
We review recent work on superlattices in monolayer and bilayer graphene. We high-light the role of ...
We formulate a low energy effective Hamiltonian to study superlattices in bilayer graphene (BLG) usi...
We study the electronic and transport properties of a graphene-based superlattice theoretically by u...
We study the transmission, transport and electronic structure properties of monolayer Graphene Super...
Electrostatic superlattices have been known to significantly modify the electronic structure of low-...
We review the energy spectrum and transport properties of several types of one-dimensional superlatt...
The electronic structure of a graphene superlattice composed by two periodic regions with different ...
The properties of electronic transport in graphene superlattices which consist of symmetrical period...
The properties of electronic transport in graphene superlattices which consist of symmetrical period...
In this work, the impact of two-dimensional superlattices on the electronic band structure and elect...
In this work, the impact of two-dimensional superlattices on the electronic band structure and elect...
In this work, the impact of two-dimensional superlattices on the electronic band structure and elect...
We show that, if graphene is subjected to the potential from an external superlattice, a band gap de...
The importance of controlling both the charge carrier density and the band gap of a semiconductor ca...
We study the transmission, transport and electronic structure properties of aperiodic Fibonacci mono...
We review recent work on superlattices in monolayer and bilayer graphene. We high-light the role of ...