We investigate the electronic and optical properties of monolayer and stacking dependent bilayer blue phosphorus in the framework of density functional theory (DFT) and tight-binding approximations. We extract the hopping parameters of TB Hamiltonian for monolayer and bilayer blue phosphorus by using the DFT results. The variation of energy band gap with applied external electric field for two different stacks of bilayer blue phosphorus are also shown. We examine the linear response of the systems due to the external electromagnetic radiation in terms of the dielectric functions in the DFT theory. The relatively large electronic band gap and possibility of exfoliation form bulk structure due to weak interlayer coupling, make blue phosphorus...
A complete set of tight-binding parameters for the description of the quasiparticle dispersion relat...
Based on density functional theory(DFT), we have investigated systematically the geometry structure ...
Phosphorene is an emerging 2D-like material with direct energy band. In this work we report the resu...
We investigate the electronic and optical properties of monolayer and stacking dependent bilayer blu...
Recently, a new semiconducting 2D material, black phosphorus, has piqued the interest of research gr...
We use an atomistic approach to study the electronic properties of monolayer and bilayer black phosp...
Optical and electronic properties of black phosphorus strongly depend on the number of layers and ty...
The magneto-optical properties of bilayer phosphorene is investigated by the generalized tight-bindi...
With a new polycarbonate-film-based dry transfer method, we successfully fabricated twisted stacked ...
Monolayer black and blue phosphorenes possess electronic and optical properties that result in uniqu...
In this study, the electronic and the optical properties of monolayer black phosphorus (BP) doped wi...
Coulomb interaction and its screening play an important role in many physical phenomena of materials...
International audienceBlack phosphorus (BP), a 2D semiconducting material of interest in electronics...
Black phosphorus exhibits a high degree of band anisotropy. However, we find that its in-plane stati...
Using first principles calculations we investigate the effect of external electric fields in the opt...
A complete set of tight-binding parameters for the description of the quasiparticle dispersion relat...
Based on density functional theory(DFT), we have investigated systematically the geometry structure ...
Phosphorene is an emerging 2D-like material with direct energy band. In this work we report the resu...
We investigate the electronic and optical properties of monolayer and stacking dependent bilayer blu...
Recently, a new semiconducting 2D material, black phosphorus, has piqued the interest of research gr...
We use an atomistic approach to study the electronic properties of monolayer and bilayer black phosp...
Optical and electronic properties of black phosphorus strongly depend on the number of layers and ty...
The magneto-optical properties of bilayer phosphorene is investigated by the generalized tight-bindi...
With a new polycarbonate-film-based dry transfer method, we successfully fabricated twisted stacked ...
Monolayer black and blue phosphorenes possess electronic and optical properties that result in uniqu...
In this study, the electronic and the optical properties of monolayer black phosphorus (BP) doped wi...
Coulomb interaction and its screening play an important role in many physical phenomena of materials...
International audienceBlack phosphorus (BP), a 2D semiconducting material of interest in electronics...
Black phosphorus exhibits a high degree of band anisotropy. However, we find that its in-plane stati...
Using first principles calculations we investigate the effect of external electric fields in the opt...
A complete set of tight-binding parameters for the description of the quasiparticle dispersion relat...
Based on density functional theory(DFT), we have investigated systematically the geometry structure ...
Phosphorene is an emerging 2D-like material with direct energy band. In this work we report the resu...