Starting from the graphene lattice tight-binding Hamiltonian with an on-site U and long-range Coulomb repulsion, we derive an interacting continuum Dirac theory governing the low-energy behavior of graphene in an applied magnetic field. Initially, we consider a clean graphene system within this effective theory and explore integer quantum Hall ferromagnetism stabilized by exchange from the long-range Coulomb repulsion. We study in detail the ground state and excitations at ν=0 and ν=±1, taking into account small symmetry-breaking terms that arise from the lattice-scale interactions, and also explore the ground states selected at ν=±3, ±4, and ±5. We argue that the ferromagnetic regime may not yet be realized in current experimental samples,...
Quantum Hall systems have a one-body energy spectrum consisting of dispersion-less Landau levels. El...
We derive an effective field-theoretical model for the one-dimensional collective mode associated wi...
Low-energy transport measurements in Quantum Hall systems have been argued to be governed by emergen...
Starting from the graphene lattice tight-binding Hamiltonian with an on-site U and long-range Coulom...
Graphene’s honeycomb lattice structure underlies much of the remarkable physics inherent in this mat...
Graphene’s honeycomb lattice structure underlies much of the remarkable physics inherent in this mat...
We study the competition between the long-range Coulomb interaction, disorder scattering, and lattic...
Electronic systems with multiple degenerate degrees of freedom can support a rich variety of broken ...
In this article we employ a simple nonrelativistic model to describe the low energy excitation of gr...
textIn a strong magnetic field, the psuedospin chirality of bilayer graphene’s low energy bands resu...
We study the presence of ferromagnetism in the phase diagram of the two-dimensional honeycomb latti...
We have studied the quantum Hall (QH) effect in two-dimensional electrons and holes in high quality ...
A detailed numerical study of a recent proposal for exotic states of the D3-probe D5 brane system wi...
We have studied the quantum Hall (QH) effect in two-dimensional electrons and holes in high quality ...
We study the presence of ferromagnetism in the phase diagram of the two-dimensional honeycomb latti...
Quantum Hall systems have a one-body energy spectrum consisting of dispersion-less Landau levels. El...
We derive an effective field-theoretical model for the one-dimensional collective mode associated wi...
Low-energy transport measurements in Quantum Hall systems have been argued to be governed by emergen...
Starting from the graphene lattice tight-binding Hamiltonian with an on-site U and long-range Coulom...
Graphene’s honeycomb lattice structure underlies much of the remarkable physics inherent in this mat...
Graphene’s honeycomb lattice structure underlies much of the remarkable physics inherent in this mat...
We study the competition between the long-range Coulomb interaction, disorder scattering, and lattic...
Electronic systems with multiple degenerate degrees of freedom can support a rich variety of broken ...
In this article we employ a simple nonrelativistic model to describe the low energy excitation of gr...
textIn a strong magnetic field, the psuedospin chirality of bilayer graphene’s low energy bands resu...
We study the presence of ferromagnetism in the phase diagram of the two-dimensional honeycomb latti...
We have studied the quantum Hall (QH) effect in two-dimensional electrons and holes in high quality ...
A detailed numerical study of a recent proposal for exotic states of the D3-probe D5 brane system wi...
We have studied the quantum Hall (QH) effect in two-dimensional electrons and holes in high quality ...
We study the presence of ferromagnetism in the phase diagram of the two-dimensional honeycomb latti...
Quantum Hall systems have a one-body energy spectrum consisting of dispersion-less Landau levels. El...
We derive an effective field-theoretical model for the one-dimensional collective mode associated wi...
Low-energy transport measurements in Quantum Hall systems have been argued to be governed by emergen...