The plasmon structure of intrinsic and extrinsic bilayer graphene is investigated in the framework of ab initio time-dependent density-functional theory (TDDFT) at the level of the random-phase approximation (RPA). A two-step scheme is adopted, where the electronic ground state of a periodically repeated slab of bilayer graphene is first determined with full inclusion of the anisotropic band structure and the interlayer interaction; a Dyson-like equation is then solved self-consistently in order to calculate the so-called density-response function of the many-electron system. A two-dimensional correction is subsequently applied in order to eliminate the artificial interaction between the replicas. The energy range below ∼30 eV is explored, ...
We report experimental signatures of plasmonic effects due to electron tunneling between adjacent gr...
A propagator of the dynamically screened Coulomb interaction in the vicinity of a graphene monolayer...
We theoretically investigate graphene plasmons in the presence of a low density of adatoms on the gr...
The plasmon structure of intrinsic and extrinsic bilayer graphene is investigated in the framework o...
The spectra of electronic excitations in graphene are calculated using first principles time-depende...
We predict the existence of transverse electric (TE) plasmons in bilayer graphene. We find that thei...
Excitation and propagation of surface plasmons in intrinsic and extrinsic graphene are analyzed from...
©1998 The American Physical Society. The electronic version of this article is the complete one and ...
In the present thesis the single- and many-particle properties of three different two-dimensional ma...
<p>Plasmons, collective electron density oscillations, provide physicists with intriguing challenges...
The relation between the energy and momentum of plasmarons in bilayer graphene is investigated withi...
We study the dielectric properties of graphene in the presence of Rashba and intrinsic spin-orbit in...
The charge susceptibility of twisted bilayer graphene is investigated in the Dirac cone, respectivel...
International audienceWe perform a systematic study of the macroscopic dielectric function and elect...
We report experimental signatures of plasmonic effects due to electron tunneling between adjacent gr...
A propagator of the dynamically screened Coulomb interaction in the vicinity of a graphene monolayer...
We theoretically investigate graphene plasmons in the presence of a low density of adatoms on the gr...
The plasmon structure of intrinsic and extrinsic bilayer graphene is investigated in the framework o...
The spectra of electronic excitations in graphene are calculated using first principles time-depende...
We predict the existence of transverse electric (TE) plasmons in bilayer graphene. We find that thei...
Excitation and propagation of surface plasmons in intrinsic and extrinsic graphene are analyzed from...
©1998 The American Physical Society. The electronic version of this article is the complete one and ...
In the present thesis the single- and many-particle properties of three different two-dimensional ma...
<p>Plasmons, collective electron density oscillations, provide physicists with intriguing challenges...
The relation between the energy and momentum of plasmarons in bilayer graphene is investigated withi...
We study the dielectric properties of graphene in the presence of Rashba and intrinsic spin-orbit in...
The charge susceptibility of twisted bilayer graphene is investigated in the Dirac cone, respectivel...
International audienceWe perform a systematic study of the macroscopic dielectric function and elect...
We report experimental signatures of plasmonic effects due to electron tunneling between adjacent gr...
A propagator of the dynamically screened Coulomb interaction in the vicinity of a graphene monolayer...
We theoretically investigate graphene plasmons in the presence of a low density of adatoms on the gr...