The plasmonic responses in the spatially separated phosphorene (single-layer black phosphorus) pairs are investigated, mainly containing the field enhancement, light confinement, and optical force. It is found that the strong anisotropic dispersion of black phosphorus gives rise to the direction-dependent symmetric and anti-symmetric plasmonic modes. Our results demonstrate that the symmetrical modes possess stronger field enhancement, higher light confinement, and larger optical force than the anti-symmetric modes in the nanoscale structures. Especially, the light confinement ratio and optical force for the symmetric mode along the armchair direction of black phosphorus can reach as high as >90% and >3000 pN/mW, respectively. These results...
Using the Tight Binding (TB) parameters extracted from Density Functional Theory (DFT) and Recursive...
We study the effects of strain on the properties and dynamics of Wannier excitons in monolayer (phos...
Optical anisotropy and thinness of 2D black phosphorous (bP) lead to weak light absorption, which li...
The plasmonic responses in the spatially separated phosphorene (single-layer black phosphorus) pairs...
Acoustic plasmon modes tightly coupled between a two-dimensional material and another conducting lay...
We study collective plasmon excitations and screening of pure and disordered single- and bilayer bla...
The behaviors of anisotropic plasmons in black phosphorus have been fully exploited across a complet...
Plasmonic materials provide electric-field localization and light confinement at subwavelength scale...
Proceeding the current interest in layered structure for electronic and optoelectronic applications,...
Black phosphorus (bP), a two-dimensional (2D) layered material, has shown great potential for infrar...
Tailoring photonics for monolithic integration beyond the diffraction limit opens a new era of nanos...
The magneto-optical properties of bilayer phosphorene is investigated by the generalized tight-bindi...
Control of the optical properties of nano-plasmonic structures is essential for next-generation opti...
Black phosphorus (BP) has recently been rediscovered as a new and interesting two-dimensional materi...
Recently, a new semiconducting 2D material, black phosphorus, has piqued the interest of research gr...
Using the Tight Binding (TB) parameters extracted from Density Functional Theory (DFT) and Recursive...
We study the effects of strain on the properties and dynamics of Wannier excitons in monolayer (phos...
Optical anisotropy and thinness of 2D black phosphorous (bP) lead to weak light absorption, which li...
The plasmonic responses in the spatially separated phosphorene (single-layer black phosphorus) pairs...
Acoustic plasmon modes tightly coupled between a two-dimensional material and another conducting lay...
We study collective plasmon excitations and screening of pure and disordered single- and bilayer bla...
The behaviors of anisotropic plasmons in black phosphorus have been fully exploited across a complet...
Plasmonic materials provide electric-field localization and light confinement at subwavelength scale...
Proceeding the current interest in layered structure for electronic and optoelectronic applications,...
Black phosphorus (bP), a two-dimensional (2D) layered material, has shown great potential for infrar...
Tailoring photonics for monolithic integration beyond the diffraction limit opens a new era of nanos...
The magneto-optical properties of bilayer phosphorene is investigated by the generalized tight-bindi...
Control of the optical properties of nano-plasmonic structures is essential for next-generation opti...
Black phosphorus (BP) has recently been rediscovered as a new and interesting two-dimensional materi...
Recently, a new semiconducting 2D material, black phosphorus, has piqued the interest of research gr...
Using the Tight Binding (TB) parameters extracted from Density Functional Theory (DFT) and Recursive...
We study the effects of strain on the properties and dynamics of Wannier excitons in monolayer (phos...
Optical anisotropy and thinness of 2D black phosphorous (bP) lead to weak light absorption, which li...