The excitonic effects on the optical absorption properties of organic semiconductors as well as gallium nitride are studied from first-principles. The Coulomb interaction between the electron and the hole is accounted for by solving the two-particle Bethe-Salpeter Equation. In the organic semiconductors the exciton binding energies strongly depend on the molecular size, the crystalline packing, as well as the polarization direction of the incoming light. We show that the electron-hole interaction can lead to strongly bound excitons with binding energies of the order of 1 eV or to a mere redistribution of oscillator strength. In several cases, the screening is efficient enough such that free charge carriers govern the optical absorption proc...
Electron-hole pairs, or excitons, are created within materials upon optical excitation or irradiatio...
International audienceWe present calculations of the absorption spectrum of semiconductors and insul...
We present a framework for obtaining reliable solid-state charge and optical excitations and spectra...
The excitonic effects on the optical absorption properties of organic semiconductors as well as gall...
The effects of electron-hole interaction on the optical properties of a variety of materials have b...
The optical properties of a variety of materials have been calculated using a recently developed ab...
An ab initio approach to the calculation of excitonic effects in the optical absorption spectra of s...
Experimental and theoretical studies have shown that excitonic effects play an important role in th...
A method for the inclusion of self-energy and excitonic effects in first-principles calculations of ...
A method for the inclusion of self-energy and excitonic effects in first-principles calculations of ...
Ab initio calculations, based on the density functional theory (DFT) in the local density approximat...
We review our theoretical approach to the optical response of low-dimensional semiconductor structur...
Excitons, or coupled electron-hole excitations, are important both for fundamental optical propertie...
We present (a) a local-orbital formulation of the electron-hole interaction in a heteropolar semicon...
Excitons, or coupled electron-hole excitations, are important both for fundamental optical propertie...
Electron-hole pairs, or excitons, are created within materials upon optical excitation or irradiatio...
International audienceWe present calculations of the absorption spectrum of semiconductors and insul...
We present a framework for obtaining reliable solid-state charge and optical excitations and spectra...
The excitonic effects on the optical absorption properties of organic semiconductors as well as gall...
The effects of electron-hole interaction on the optical properties of a variety of materials have b...
The optical properties of a variety of materials have been calculated using a recently developed ab...
An ab initio approach to the calculation of excitonic effects in the optical absorption spectra of s...
Experimental and theoretical studies have shown that excitonic effects play an important role in th...
A method for the inclusion of self-energy and excitonic effects in first-principles calculations of ...
A method for the inclusion of self-energy and excitonic effects in first-principles calculations of ...
Ab initio calculations, based on the density functional theory (DFT) in the local density approximat...
We review our theoretical approach to the optical response of low-dimensional semiconductor structur...
Excitons, or coupled electron-hole excitations, are important both for fundamental optical propertie...
We present (a) a local-orbital formulation of the electron-hole interaction in a heteropolar semicon...
Excitons, or coupled electron-hole excitations, are important both for fundamental optical propertie...
Electron-hole pairs, or excitons, are created within materials upon optical excitation or irradiatio...
International audienceWe present calculations of the absorption spectrum of semiconductors and insul...
We present a framework for obtaining reliable solid-state charge and optical excitations and spectra...