In this paper, we investigate the existence of bound trion states in fractional dimensional nanostructures, in terms of variational calculus. We start with trial states, then we refine the result with the help of the Hartree–Fock approximation and finally we use a partial basis expansion. We show that Hartree–Fock significantly underestimates the trion binding energy and that the correlation energy is comparable with the trion binding energy. Furthermore we calculate the binding energies of positive and negative trions restricted to a large subspace of functions, which we expect to span the low-lying eigenstates of the full Hamiltonian. We find that the difference between the positive and negative trion binding energies varies very little f...
We present a systematic study of excitonic and impurity states in semiconducting quantum wells withi...
We present a systematic study of excitonic and impurity states in semiconducting quantum wells withi...
This dissertation investigates charge carriers in nanoscale devices through theoretical and numerica...
We study the binding energies of singlet trions, i.e., charged excitons, in carbon nanotubes. The pr...
International audienceWe investigate the trion binding energy in a three-dimensional semiconductor, ...
We present a theoretical study combined with experimental validations demonstrating that CdSe nanopl...
The optoelectronic properties of metal chalcogenide colloidal nanoplatelets are often interpreted i...
In this work, electronic dynamics in low-dimensional systems are studied. The main objective of this...
We investigate singlet and triplet trion states in semiconducting carbon nanotubes using a one-dimen...
Excitonic effects play a particularly important role in the optoelectronic behavior of two-dimension...
We study the energy spectra of small three-dimensional (3D) and two-dimensional (2D) semiconductor q...
We present a model that takes into account the interface-defects contribution to the binding energy ...
he realization of mixtures of excitons and charge carriers in van der Waals materials presents a fro...
A computational model is presented to calculate the ground state energy of neutral and charged exci...
We analyse the low lying spectrum of a model of excitons in carbon nanotubes. Consider two particles...
We present a systematic study of excitonic and impurity states in semiconducting quantum wells withi...
We present a systematic study of excitonic and impurity states in semiconducting quantum wells withi...
This dissertation investigates charge carriers in nanoscale devices through theoretical and numerica...
We study the binding energies of singlet trions, i.e., charged excitons, in carbon nanotubes. The pr...
International audienceWe investigate the trion binding energy in a three-dimensional semiconductor, ...
We present a theoretical study combined with experimental validations demonstrating that CdSe nanopl...
The optoelectronic properties of metal chalcogenide colloidal nanoplatelets are often interpreted i...
In this work, electronic dynamics in low-dimensional systems are studied. The main objective of this...
We investigate singlet and triplet trion states in semiconducting carbon nanotubes using a one-dimen...
Excitonic effects play a particularly important role in the optoelectronic behavior of two-dimension...
We study the energy spectra of small three-dimensional (3D) and two-dimensional (2D) semiconductor q...
We present a model that takes into account the interface-defects contribution to the binding energy ...
he realization of mixtures of excitons and charge carriers in van der Waals materials presents a fro...
A computational model is presented to calculate the ground state energy of neutral and charged exci...
We analyse the low lying spectrum of a model of excitons in carbon nanotubes. Consider two particles...
We present a systematic study of excitonic and impurity states in semiconducting quantum wells withi...
We present a systematic study of excitonic and impurity states in semiconducting quantum wells withi...
This dissertation investigates charge carriers in nanoscale devices through theoretical and numerica...