We study the electronic structure and the optical properties of germanium clusters up to about 10(3) atoms, by using a semi-empirical tight-binding approach. Germanium nanocrystals are related to quantum dots growing, by a self-organization process, in sapphire matrices. The optical properties of such dots are experimentally found to be strongly influenced by quantum confinement effects.. We investigate these effects from the theoretical point of view, calculating the optical spectra in the single-particle approximation. Inclusion of the electron-hole interaction is found to yield visible effects
Semiconductor nanostructures show many special physical properties associated with quantum confineme...
We calculate the electronic structures of Germanium nanowires by taking the effective-mass theory. T...
The electronic band structure of various Ge quantum wires of different sizes, with hydrogenated surf...
We report a combined theoretical and experimental investigation of quantum confinement effects on th...
Quantum confinement effects in Ge nanocrystals in the size range 26-130 Angstrom have been investiga...
Highly crystalline germanium (Ge) nanocrystals in the size range 2--10 nm were grown in inverse mice...
To address the yet open question regarding the nature of quantum confinement in Ge nanocrystals (Ge ...
To address the yet open question regarding the nature of quantum confinement in Ge nanocrystals (Ge ...
Nanostructuring of a material leads to enormous effects on its excited state properties. This study,...
The electronic band structure of various Ge quantum wires of different sizes, with hydrogenated surf...
We used a combination of optically-detected x-ray absorption spectroscopy with molecular dynamics si...
Quantum confined germanium (Ge) nanocrystals were synthesized by a thermal annealing of germanium ox...
Within a first-principles framework we show how many-body effects crucially modify the electronic an...
Semiconductor nanostructures show many special physical properties associated with quantum confineme...
We calculate the electronic structures of Germanium nanowires by taking the effective-mass theory. T...
The electronic band structure of various Ge quantum wires of different sizes, with hydrogenated surf...
We report a combined theoretical and experimental investigation of quantum confinement effects on th...
Quantum confinement effects in Ge nanocrystals in the size range 26-130 Angstrom have been investiga...
Highly crystalline germanium (Ge) nanocrystals in the size range 2--10 nm were grown in inverse mice...
To address the yet open question regarding the nature of quantum confinement in Ge nanocrystals (Ge ...
To address the yet open question regarding the nature of quantum confinement in Ge nanocrystals (Ge ...
Nanostructuring of a material leads to enormous effects on its excited state properties. This study,...
The electronic band structure of various Ge quantum wires of different sizes, with hydrogenated surf...
We used a combination of optically-detected x-ray absorption spectroscopy with molecular dynamics si...
Quantum confined germanium (Ge) nanocrystals were synthesized by a thermal annealing of germanium ox...
Within a first-principles framework we show how many-body effects crucially modify the electronic an...
Semiconductor nanostructures show many special physical properties associated with quantum confineme...
We calculate the electronic structures of Germanium nanowires by taking the effective-mass theory. T...
The electronic band structure of various Ge quantum wires of different sizes, with hydrogenated surf...