Time-resolved photoluminescence (TRPL) analysis is often performed to assess the qualitative features of semiconductor crystals using predetermined functions (e.g., double- or multi-exponentials) to fit the decays of PL intensity. However, in many cases-including the notable case of interband PL in direct gap semiconductors-this approach just provides phenomenological parameters and not fundamental physical quantities. In the present work, we highlight that within a properly chosen range of laser excitation, the TRPL of zinc oxide (ZnO) bulk crystals can be described with excellent precision with second-order kinetics for the total recombination rate. We show that this allows us to define an original method for data analysis, based on evalu...
The mechanism of the commonly observed green photoluminescence (PL) emission in ZnO is still controv...
The optical properties of a high quality bulk ZnO, thermally post treated in a forming gas environme...
Formation dynamics of free and neutral donor bound excitons (FX and D 0X) i...
Time-resolved photoluminescence (TRPL) analysis is often performed to assess the quali-tative featur...
The recombination dynamics of defect states in zinc oxide nanowires has been studied by developing a...
International audienceAn analysis of the main recombination modes in nitrides, based on new method o...
Time-resolved photoluminescence spectroscopy at 2 K was used to measure the radiative recombination ...
Time-resolved photoluminescence spectroscopy at 2 K was used to measure the radiative recombination ...
The recombination property of nitrogen (N)-related acceptor-bound states in ZnO has been investigate...
The temperature and carrier-density dependent excitonic relaxation in bulk ZnO is studied by means o...
The recombination property of nitrogen (N)-related acceptor-bound states in ZnO has been investigate...
Time-resolved photoluminescence spectroscopy at 2 K was used to measure the radiative recombination ...
Time-resolved photoluminescence spectroscopy at 2 K was used to measure the radiative recombination ...
We report room-temperature time-integrated and time-resolved photoluminescence (PL) measurements on ...
We report the femtosecond time-resolved studies of room temperature exciton recombination and ultraf...
The mechanism of the commonly observed green photoluminescence (PL) emission in ZnO is still controv...
The optical properties of a high quality bulk ZnO, thermally post treated in a forming gas environme...
Formation dynamics of free and neutral donor bound excitons (FX and D 0X) i...
Time-resolved photoluminescence (TRPL) analysis is often performed to assess the quali-tative featur...
The recombination dynamics of defect states in zinc oxide nanowires has been studied by developing a...
International audienceAn analysis of the main recombination modes in nitrides, based on new method o...
Time-resolved photoluminescence spectroscopy at 2 K was used to measure the radiative recombination ...
Time-resolved photoluminescence spectroscopy at 2 K was used to measure the radiative recombination ...
The recombination property of nitrogen (N)-related acceptor-bound states in ZnO has been investigate...
The temperature and carrier-density dependent excitonic relaxation in bulk ZnO is studied by means o...
The recombination property of nitrogen (N)-related acceptor-bound states in ZnO has been investigate...
Time-resolved photoluminescence spectroscopy at 2 K was used to measure the radiative recombination ...
Time-resolved photoluminescence spectroscopy at 2 K was used to measure the radiative recombination ...
We report room-temperature time-integrated and time-resolved photoluminescence (PL) measurements on ...
We report the femtosecond time-resolved studies of room temperature exciton recombination and ultraf...
The mechanism of the commonly observed green photoluminescence (PL) emission in ZnO is still controv...
The optical properties of a high quality bulk ZnO, thermally post treated in a forming gas environme...
Formation dynamics of free and neutral donor bound excitons (FX and D 0X) i...