We study the effect of strain on the band engineering in gapped graphene subject to external sources. By applying the Floquet theory, we determine the effective Hamiltonian of electron dressed by a linearly, circularly, and an elliptically polarized dressing field in the presence of strain along armchair and zigzag directions. Our results show that the energy spectrum exhibits different symmetries, and for the strainless case, it takes an isotropic and anisotropic forms whatever the values of irradiation intensity, whereas it is linear as in the case of pristine graphene. It increases slowly when strain is applied along the armchair direction but rapidly for the zigzag case. Moreover, it is found that the renormalized band gap changes along...
We discuss the physics of pseudomagnetic field,s which can be induced in graphene by applying strain...
The discovery of correlated phases in twisted moiré superlattices accelerated the search for low-di...
The strain-dependent electronic structure of graphene ribbons is studied based on tight-binding theo...
The study deals with electronic properties of uniaxially stressed mono- and multi-layer graphene she...
The tight-binding model is used to inquire the uniaxial strain effect on the electronic structure o...
We exploit the concept of strain-induced band-structure engineering in graphene through the calculat...
The band structures of zigzag graphene nanoribbons under uniaxial strain are investigated within the...
Includes bibliographical references (leaves 38-40 )We wish to understand some of the electronic prop...
Lacking a band gap largely limits the application of graphene in electronic devices. Previous study ...
We report a first-principles study on the electronic structures of deformed graphene nanoribbons (GN...
The introduction of lattice anisotropy causes Dirac cones to shift in response to the applied strain...
Strain has been known to modify the electric and optical properties of graphene. This phenomenon has...
The analysis of the electronic properties of strained or lattice deformed graphene combines ideas fr...
Abstract—We have studied the influence of out-of-plane strain on the electronic properties of zigzag...
Graphene is an extraordinary material which shows tremendous potential as a replacement for silicon ...
We discuss the physics of pseudomagnetic field,s which can be induced in graphene by applying strain...
The discovery of correlated phases in twisted moiré superlattices accelerated the search for low-di...
The strain-dependent electronic structure of graphene ribbons is studied based on tight-binding theo...
The study deals with electronic properties of uniaxially stressed mono- and multi-layer graphene she...
The tight-binding model is used to inquire the uniaxial strain effect on the electronic structure o...
We exploit the concept of strain-induced band-structure engineering in graphene through the calculat...
The band structures of zigzag graphene nanoribbons under uniaxial strain are investigated within the...
Includes bibliographical references (leaves 38-40 )We wish to understand some of the electronic prop...
Lacking a band gap largely limits the application of graphene in electronic devices. Previous study ...
We report a first-principles study on the electronic structures of deformed graphene nanoribbons (GN...
The introduction of lattice anisotropy causes Dirac cones to shift in response to the applied strain...
Strain has been known to modify the electric and optical properties of graphene. This phenomenon has...
The analysis of the electronic properties of strained or lattice deformed graphene combines ideas fr...
Abstract—We have studied the influence of out-of-plane strain on the electronic properties of zigzag...
Graphene is an extraordinary material which shows tremendous potential as a replacement for silicon ...
We discuss the physics of pseudomagnetic field,s which can be induced in graphene by applying strain...
The discovery of correlated phases in twisted moiré superlattices accelerated the search for low-di...
The strain-dependent electronic structure of graphene ribbons is studied based on tight-binding theo...