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Electronic and optical properties of strained graphene and other strained 2D materials: a review
This review presents the state of the art in strain and ripple-induced effects on the electronic
and optical properties of graphene. It starts by providing the crystallographic description of …
and optical properties of graphene. It starts by providing the crystallographic description of …
Novel effects of strains in graphene and other two dimensional materials
The analysis of the electronic properties of strained or lattice deformed graphene combines
ideas from classical condensed matter physics, soft matter, and geometrical aspects of …
ideas from classical condensed matter physics, soft matter, and geometrical aspects of …
Fermi velocity engineering in graphene by substrate modification
The Fermi velocity, v F, is one of the key concepts in the study of a material, as it bears
information on a variety of fundamental properties. Upon increasing demand on the device …
information on a variety of fundamental properties. Upon increasing demand on the device …
Gapless interface states between topological insulators with opposite Dirac velocities
R Takahashi, S Murakami - Physical review letters, 2011 - APS
The Dirac cone on a surface of a topological insulator shows linear dispersion analogous to
optics and its velocity depends on materials. We consider a junction of two topological …
optics and its velocity depends on materials. We consider a junction of two topological …
Manipulating type-I and type-II Dirac polaritons in cavity-embedded honeycomb metasurfaces
Pseudorelativistic Dirac quasiparticles have emerged in a plethora of artificial graphene
systems that mimic the underlying honeycomb symmetry of graphene. However, it is …
systems that mimic the underlying honeycomb symmetry of graphene. However, it is …
Transport properties of graphene across strain-induced nonuniform velocity profiles
FMD Pellegrino, GGN Angilella, R Pucci - Physical Review B—Condensed …, 2011 - APS
We consider the effect of uniaxial strain on ballistic transport in graphene, across single and
multiple tunneling barriers. Specifically, we show that applied strain not only shifts the …
multiple tunneling barriers. Specifically, we show that applied strain not only shifts the …
Weyl-gauge symmetry of graphene
A Iorio - Annals of Physics, 2011 - Elsevier
The conformal invariance of the low energy limit theory governing the electronic properties
of graphene is explored. In particular, it is noted that the massless Dirac theory in point …
of graphene is explored. In particular, it is noted that the massless Dirac theory in point …
Acoustic plasmons and composite hole-acoustic plasmon satellite bands in graphene on a metal gate
We demonstrate that single-layer graphene in the presence of a metal gate displays a
gapless collective (plasmon) mode that has a linear dispersion at long wavelengths. We …
gapless collective (plasmon) mode that has a linear dispersion at long wavelengths. We …
Bielectron vortices in two-dimensional Dirac semimetals
Searching for new states of matter and unusual quasi-particles in emerging materials and
especially low-dimensional systems is one of the major trends in contemporary condensed …
especially low-dimensional systems is one of the major trends in contemporary condensed …
[HTML][HTML] Controlling the energy gap of graphene by Fermi velocity engineering
JRF Lima - Physics Letters A, 2015 - Elsevier
The electronic structure of a single-layer graphene with a periodic Fermi velocity modulation
is investigated by using an effective Dirac-like Hamiltonian. In a gapless graphene or in a …
is investigated by using an effective Dirac-like Hamiltonian. In a gapless graphene or in a …