Basing on Dirac equation for interacting massless fermions, we propose a nonlinear model that describes a possible mechanism of ferromagnetism in graphene structures, resulting from electron-electron interaction and spontaneous breaking of spin symmetry of valence electrons. Qualitative predictions of the model are important for practical applications in spintronics. Localized kink-antikink patterns of valence electron spin density on the graphene surface are calculated, their interaction is described, and, finally, the formation of their quasi-bound metastable states (breathers) is investigated. The spectrum of breathers is calculated in both the analytical and the numerical form. Once created, the inverted population of the appropriate st...
We report on spin transport features which are unique to high quality bilayer graphene, in the absen...
Graphene, a single-layer network of carbon atoms, shows outstanding electrical and mechanical proper...
We analyze the energy spectrum of graphene in the presence of spin-orbit coupling and a one-dimensio...
Basing on Dirac equation for interacting massless fermions, we propose a nonlinear model that descri...
Basing on Dirac equation for interacting massless fermions, we propose a nonlinear model that descri...
The topics covered in this work are - spin-density-wave instabilities in monolayer graphene doped to...
PMCID: PMC4800001.-- et al.Controlling the dynamics of spins on surfaces is pivotal to the design of...
The electronic properties of a graphene monolayer in a magnetic and a strain-induced pseudomagnetic ...
We present a unified theoretical framework for the study of spin dynamics and relativistic transport...
Graphene is basically a single atomic layer of graphite; an abundant mineral which is an allotrope o...
Spintronics, which manipulate spins but not electron charge, are highly valued as energy and thermal...
We propose a generalized Dirac fermion description for the electronic state of graphene terminated ...
The electronic band structure of a material can acquire interesting topological properties in the pr...
We study magneto-optical properties of monolayer graphene by means of quantum field theory methods i...
We use both continuum and lattice models to study the energy-momentum dispersion and the dynamics of...
We report on spin transport features which are unique to high quality bilayer graphene, in the absen...
Graphene, a single-layer network of carbon atoms, shows outstanding electrical and mechanical proper...
We analyze the energy spectrum of graphene in the presence of spin-orbit coupling and a one-dimensio...
Basing on Dirac equation for interacting massless fermions, we propose a nonlinear model that descri...
Basing on Dirac equation for interacting massless fermions, we propose a nonlinear model that descri...
The topics covered in this work are - spin-density-wave instabilities in monolayer graphene doped to...
PMCID: PMC4800001.-- et al.Controlling the dynamics of spins on surfaces is pivotal to the design of...
The electronic properties of a graphene monolayer in a magnetic and a strain-induced pseudomagnetic ...
We present a unified theoretical framework for the study of spin dynamics and relativistic transport...
Graphene is basically a single atomic layer of graphite; an abundant mineral which is an allotrope o...
Spintronics, which manipulate spins but not electron charge, are highly valued as energy and thermal...
We propose a generalized Dirac fermion description for the electronic state of graphene terminated ...
The electronic band structure of a material can acquire interesting topological properties in the pr...
We study magneto-optical properties of monolayer graphene by means of quantum field theory methods i...
We use both continuum and lattice models to study the energy-momentum dispersion and the dynamics of...
We report on spin transport features which are unique to high quality bilayer graphene, in the absen...
Graphene, a single-layer network of carbon atoms, shows outstanding electrical and mechanical proper...
We analyze the energy spectrum of graphene in the presence of spin-orbit coupling and a one-dimensio...