We study direct and indirect excitons in Rydberg states in phosphorene monolayers, bilayer and van der Waals (vdW) heterostructure in an external magnetic field, applied perpendicular to the monolayer or heterostructure within the framework of the effective mass approximation. Binding energies of magnetoexcitons are calculated by a numerical integration of the Schrodinger equation using the Rytova-Keldysh potential for direct magnetoexcitons and both the Rytova-Keldysh and Coulomb potentials for indirect one. The latter allows to understand the role of screening in phosphorene. We report the magnetic field energy contribution to the binding energies and diamagnetic coefficients (DMCs) for magnetoexcitons that strongly depend on the effectiv...
We predict angle-dependent superfluidity for a new class of 2D materials -- transition metals tricha...
The high-quality structures containing semiconducting transition metal dichalcogenides (S-TMDs) mono...
The quantum Monte Carlo (QMC) method is applied to obtain the fundamental (quasiparticle) electronic...
This research focuses on the direct and indirect excitons in Rydberg states in monolayers, bilayers,...
We study direct and indirect magnetoexcitons in Rydberg states in monolayers and double-layer hetero...
Direct and indirect excitons in Rydberg states in transition metal trichalcogenide (TMTC) monolayers...
Phosphorene, a monolayer of black phosphorus, is a two-dimensional material that lacks a multivalley...
We report a density functional theory (DFT) study regarding the effects of atomic defects, such as v...
Nanoribbons - nanometer wide strips of a two-dimensional material - are a unique system in condensed...
The magneto-optical properties of bilayer phosphorene is investigated by the generalized tight-bindi...
Phosphorene, a single layer of black phosphorus, is a direct band gap two-dimensional semiconductor ...
We studied the exciton properties in double layers of transition metal dichalcogenides (TMDs) with a...
Using first-principles calculations based on density-functional theory we systematically investigate...
The valence flat bands in transition metal dichalcogenide (TMD) heterobilayers are shown to exhibit ...
Graphene and its van der Waals (vdW) heterostructures provide a unique and versatile playground for ...
We predict angle-dependent superfluidity for a new class of 2D materials -- transition metals tricha...
The high-quality structures containing semiconducting transition metal dichalcogenides (S-TMDs) mono...
The quantum Monte Carlo (QMC) method is applied to obtain the fundamental (quasiparticle) electronic...
This research focuses on the direct and indirect excitons in Rydberg states in monolayers, bilayers,...
We study direct and indirect magnetoexcitons in Rydberg states in monolayers and double-layer hetero...
Direct and indirect excitons in Rydberg states in transition metal trichalcogenide (TMTC) monolayers...
Phosphorene, a monolayer of black phosphorus, is a two-dimensional material that lacks a multivalley...
We report a density functional theory (DFT) study regarding the effects of atomic defects, such as v...
Nanoribbons - nanometer wide strips of a two-dimensional material - are a unique system in condensed...
The magneto-optical properties of bilayer phosphorene is investigated by the generalized tight-bindi...
Phosphorene, a single layer of black phosphorus, is a direct band gap two-dimensional semiconductor ...
We studied the exciton properties in double layers of transition metal dichalcogenides (TMDs) with a...
Using first-principles calculations based on density-functional theory we systematically investigate...
The valence flat bands in transition metal dichalcogenide (TMD) heterobilayers are shown to exhibit ...
Graphene and its van der Waals (vdW) heterostructures provide a unique and versatile playground for ...
We predict angle-dependent superfluidity for a new class of 2D materials -- transition metals tricha...
The high-quality structures containing semiconducting transition metal dichalcogenides (S-TMDs) mono...
The quantum Monte Carlo (QMC) method is applied to obtain the fundamental (quasiparticle) electronic...