Trapped carrier dynamics has been studied on Si3 N4 nanodots grown by plasma enhanced chemical vapor deposition (PECVD) and on SiO2 nanodots grown by pulsed laser deposition (PLD) on Si wafers. Carrier dynamics can be explained with a model based on Coulomb interaction with the boundary conditions of the nanodot structure. The trapped charge can be estimated quantitatively from the measured trap dynamics, elucidating the electrostatic effect in a small dielectric system.close0
This thesis is devoted to a study of the conductivity of confined charge carriers in various nanocry...
© The Royal Society of Chemistry 2020. The movement of charge carriers within semiconductor nanocrys...
Understanding the impact of positional and energetic disorders in nanocrystal (NC) quantum dot thin ...
Noncrystalline semiconductor materials often exhibit hysteresis in charge transport measurements who...
Charge carrier trapping by the surface defects of colloidal semiconductor nanocrystal (NC) is a ubiq...
We study anomalies in the Coulomb blockade spectrum of a quantum dot formed in a silicon nanowire. T...
Semiconductor nanostructures show electrical and optical properties which can be very different from...
This dissertation investigates charge carriers in nanoscale devices through theoretical and numerica...
International audienceThe transport phenomena in Metal-Oxide-Semiconductor (MOS) structures having s...
We investigate the activation energy and carrier dynamics of CdTe/ZnTe quantum dots (QDs) grown on G...
The scaling of Silicon (Si) technology is approaching the physical limit, where various quantum effe...
In the main part of this thesis I study the relaxation mechanisms of charge carriers in silicon nano...
Self-assembled quantum dots are nanoscopic clusters of semiconductor atoms that exhibit atom-like pr...
[[abstract]]Frequency-dependent capacitance-voltage spectroscopy was applied to investigate the carr...
Nanodielectrics have been expected to improve the electrical performance and considered as dielectri...
This thesis is devoted to a study of the conductivity of confined charge carriers in various nanocry...
© The Royal Society of Chemistry 2020. The movement of charge carriers within semiconductor nanocrys...
Understanding the impact of positional and energetic disorders in nanocrystal (NC) quantum dot thin ...
Noncrystalline semiconductor materials often exhibit hysteresis in charge transport measurements who...
Charge carrier trapping by the surface defects of colloidal semiconductor nanocrystal (NC) is a ubiq...
We study anomalies in the Coulomb blockade spectrum of a quantum dot formed in a silicon nanowire. T...
Semiconductor nanostructures show electrical and optical properties which can be very different from...
This dissertation investigates charge carriers in nanoscale devices through theoretical and numerica...
International audienceThe transport phenomena in Metal-Oxide-Semiconductor (MOS) structures having s...
We investigate the activation energy and carrier dynamics of CdTe/ZnTe quantum dots (QDs) grown on G...
The scaling of Silicon (Si) technology is approaching the physical limit, where various quantum effe...
In the main part of this thesis I study the relaxation mechanisms of charge carriers in silicon nano...
Self-assembled quantum dots are nanoscopic clusters of semiconductor atoms that exhibit atom-like pr...
[[abstract]]Frequency-dependent capacitance-voltage spectroscopy was applied to investigate the carr...
Nanodielectrics have been expected to improve the electrical performance and considered as dielectri...
This thesis is devoted to a study of the conductivity of confined charge carriers in various nanocry...
© The Royal Society of Chemistry 2020. The movement of charge carriers within semiconductor nanocrys...
Understanding the impact of positional and energetic disorders in nanocrystal (NC) quantum dot thin ...