A distribution function for localized carriers, f (E, T) = 1/ e(E-Ea)/kBT+τtr / τr, is obtained by solving a rate equation, in which electrical carriers' generation, thermal escape, recapture and radiative recombination are taken into account. Based on this distribution function, a model is developed for luminescence from localized-state ensemble with a Gaussian-type density of states. The model reproduces quantitatively all the anomalous temperature behaviors of localized-state luminescence. It reduces to the well-known band-tail and luminescence quenching models under certain approximations. © EDP Sciences.link_to_subscribed_fulltex
In this article, we report a combined experimental and theoretical study on the luminescence dynamic...
A comprehensive assessment of the nature of the distribution of sub band-gap energy states in bulk G...
583-589Five sets of thermoluminescence (TL) peaks with activation energy E = 0.50, 0.65, 0.75, 1.0...
The 'S-shape' (decrease-increase-decrease) temperature dependence of luminescence peak shift from se...
Phosphors exhibit luminescence following irradiation and the absorption of energy depends upon the r...
Localized transitions within the forbidden energy band have been used to describe a variety of lumin...
A phenomenological model is suggested to describe nonradiative recombination of optical excitations ...
The photoluminescence from semiconductor alloys is inhomogeneously broadened due to alloy disorder. ...
The temperature dependence of the photolumJnescence decay time associated with the radiative decay o...
The usual, simple model for the analysis of thermoluminescence (TL) curves deals with just one trapp...
The nature of the temperature dependence of luminescence intensity from Er+ ions in GaInAsP, Si, InP...
In this article, we report a combined experimental and theoretical study on the luminescence dynamic...
We have studied both theoretically and experimentally the luminescence spectra and kinetics of cryst...
AbstractCathodoluminescence (CL) as other luminescence phenomena depends strongly on temperature. Th...
In this article, we report a combined experimental and theoretical study on the luminescence dynamic...
In this article, we report a combined experimental and theoretical study on the luminescence dynamic...
A comprehensive assessment of the nature of the distribution of sub band-gap energy states in bulk G...
583-589Five sets of thermoluminescence (TL) peaks with activation energy E = 0.50, 0.65, 0.75, 1.0...
The 'S-shape' (decrease-increase-decrease) temperature dependence of luminescence peak shift from se...
Phosphors exhibit luminescence following irradiation and the absorption of energy depends upon the r...
Localized transitions within the forbidden energy band have been used to describe a variety of lumin...
A phenomenological model is suggested to describe nonradiative recombination of optical excitations ...
The photoluminescence from semiconductor alloys is inhomogeneously broadened due to alloy disorder. ...
The temperature dependence of the photolumJnescence decay time associated with the radiative decay o...
The usual, simple model for the analysis of thermoluminescence (TL) curves deals with just one trapp...
The nature of the temperature dependence of luminescence intensity from Er+ ions in GaInAsP, Si, InP...
In this article, we report a combined experimental and theoretical study on the luminescence dynamic...
We have studied both theoretically and experimentally the luminescence spectra and kinetics of cryst...
AbstractCathodoluminescence (CL) as other luminescence phenomena depends strongly on temperature. Th...
In this article, we report a combined experimental and theoretical study on the luminescence dynamic...
In this article, we report a combined experimental and theoretical study on the luminescence dynamic...
A comprehensive assessment of the nature of the distribution of sub band-gap energy states in bulk G...
583-589Five sets of thermoluminescence (TL) peaks with activation energy E = 0.50, 0.65, 0.75, 1.0...