AbstractIn this work we analyzed the time propagation of wave packets on a sheet of graphene under the action of external magnetic and electric fields in the Hall configuration. The treatment given in this work to the problem of particle propagation in graphene is based on the tight-binding model, not requiring to consider the linear approximation of the band structure around point K in the Brillouin zone. So, our calculation is able to describe the behavior of the particle in more general cases, not only the case of low lying excited states, the so-called massless Dirac electrons. Evaluating the time evolution of the wave function we assume as an initial state a Gaussian with a given velocity. We have considered the symmetric gauge for the...
We show that superlattices based on zero-gap semiconductors such as graphene and mercury telluride e...
At the beginning of 21th century, the range of solid state materials was extended by crystals featur...
On the basis of the well-known kinetic description of e − e + vacuum pair creation...
We investigate the propagation of wave packets on graphene in a perpendicular magnetic field and the...
In the last few decades, the dynamics of wave packets has been subject of many theoretical and exper...
International audienceWe present analytical expressions for the eigenstates and eigenvalues of elect...
We present analytical expressions for the eigenstates and eigenvalues of electrons confine...
We present analytical expressions for the eigenstates and eigenvalues of electrons confined in a gra...
We develop a finite-difference time-domain (FDTD) method for simulating the dynamics of graphene ele...
Graphene nanoribbons provide an ideal platform for electronic interferometry in the integer quantum ...
At the beginning of 21th century, the range of solid state materials was extended by crystals featur...
Graphene nanoribbons provide an ideal platform for electronic interferometry in the integer quantum ...
Mechanical deformations of graphene induce a term in the Dirac Hamiltonian that is reminiscent of an...
We develop a finite-difference time-domain (FDTD) method for simulating the dynamics of graphene ele...
Graphene nanoribbons provide an ideal platform for electronic interferometry in the Integer Quantum ...
We show that superlattices based on zero-gap semiconductors such as graphene and mercury telluride e...
At the beginning of 21th century, the range of solid state materials was extended by crystals featur...
On the basis of the well-known kinetic description of e − e + vacuum pair creation...
We investigate the propagation of wave packets on graphene in a perpendicular magnetic field and the...
In the last few decades, the dynamics of wave packets has been subject of many theoretical and exper...
International audienceWe present analytical expressions for the eigenstates and eigenvalues of elect...
We present analytical expressions for the eigenstates and eigenvalues of electrons confine...
We present analytical expressions for the eigenstates and eigenvalues of electrons confined in a gra...
We develop a finite-difference time-domain (FDTD) method for simulating the dynamics of graphene ele...
Graphene nanoribbons provide an ideal platform for electronic interferometry in the integer quantum ...
At the beginning of 21th century, the range of solid state materials was extended by crystals featur...
Graphene nanoribbons provide an ideal platform for electronic interferometry in the integer quantum ...
Mechanical deformations of graphene induce a term in the Dirac Hamiltonian that is reminiscent of an...
We develop a finite-difference time-domain (FDTD) method for simulating the dynamics of graphene ele...
Graphene nanoribbons provide an ideal platform for electronic interferometry in the Integer Quantum ...
We show that superlattices based on zero-gap semiconductors such as graphene and mercury telluride e...
At the beginning of 21th century, the range of solid state materials was extended by crystals featur...
On the basis of the well-known kinetic description of e − e + vacuum pair creation...