We show that it is possible to perform full microscopic calculations of the phonon-assisted and no-phonon radiative transitions in silicon nanocrystals. These are based on a tight-binding Hamiltonian for the electron and electron-phonon part together with a valence force-field model for phonons. We predict an unexpected large broadening of the luminescence peaks attributed to the breaking of bulk selection rules and to multiphonon effects in the acoustic range. We also find that phonon-assisted transitions dominate over the full range of sizes. These results are compared to previous estimates in the effective-mass approximation and are used to discuss available experimental dat
A microscopic theory of interacting charge carriers, lattice vibrations, and light modes in semicond...
A striking correlation between infrared photoinduced absorption spectra and the photoluminescence fr...
Cataloged from PDF version of article.We study phonon-assisted Forster resonance energy transfer (FR...
We show that it is possible to perform full microscopic calculations of the phonon-assisted and no-p...
We report a detailed photoluminescence (PL) study on single silicon nanocrystals produced by laser p...
Optical gain in an ensemble of semiconductor nanocrystals is usually difficult to reach because mult...
Crystalline silicon is the most important semiconductor material in the electronics industry. Howeve...
We study phonon-assisted Förster resonance energy transfer (FRET) into an indirect band-gap semicond...
A model calculation on optical gain and co-stimulated emission of photons and phonons in indirect ba...
Comparison of the measured absolute absorption cross section on a per Si atom basis of plasma-synthe...
The effect of quantum confinement on the direct bandgap of spherical Si nanocrystals has been modell...
Recent analysis of the literature shows that the photoluminescence (PL) of Si nanocrystals and porou...
The possibility of obtaining optical gain in an ensemble of semiconductor nanocrystals without invol...
This perspective reviews the topic of exciton-phonon coupling (EPC) in II-VI semiconductor nanocryst...
We study phonon-assisted Förster resonance energy transfer (FRET) into an indirect band-gap semicon...
A microscopic theory of interacting charge carriers, lattice vibrations, and light modes in semicond...
A striking correlation between infrared photoinduced absorption spectra and the photoluminescence fr...
Cataloged from PDF version of article.We study phonon-assisted Forster resonance energy transfer (FR...
We show that it is possible to perform full microscopic calculations of the phonon-assisted and no-p...
We report a detailed photoluminescence (PL) study on single silicon nanocrystals produced by laser p...
Optical gain in an ensemble of semiconductor nanocrystals is usually difficult to reach because mult...
Crystalline silicon is the most important semiconductor material in the electronics industry. Howeve...
We study phonon-assisted Förster resonance energy transfer (FRET) into an indirect band-gap semicond...
A model calculation on optical gain and co-stimulated emission of photons and phonons in indirect ba...
Comparison of the measured absolute absorption cross section on a per Si atom basis of plasma-synthe...
The effect of quantum confinement on the direct bandgap of spherical Si nanocrystals has been modell...
Recent analysis of the literature shows that the photoluminescence (PL) of Si nanocrystals and porou...
The possibility of obtaining optical gain in an ensemble of semiconductor nanocrystals without invol...
This perspective reviews the topic of exciton-phonon coupling (EPC) in II-VI semiconductor nanocryst...
We study phonon-assisted Förster resonance energy transfer (FRET) into an indirect band-gap semicon...
A microscopic theory of interacting charge carriers, lattice vibrations, and light modes in semicond...
A striking correlation between infrared photoinduced absorption spectra and the photoluminescence fr...
Cataloged from PDF version of article.We study phonon-assisted Forster resonance energy transfer (FR...