Report for the scientific sojourn carried out at the Paul Drude Institut für Festkörperelektronik of the Stanford University, USA, from 2010 to 2012. The objective of this project is the transport and control of electronic charge and spin along GaAs-based semiconductor heterostructures. The electronic transport has been achieved by taking advantage of the piezolectric field induced by surface acoustic waves in non-centrosymmetric materials like GaAs. This piezolectric field separates photogenerated electrons and holes at different positions along the acoustic wave, where they acummulate and are transported at the same velocity as the wave. Two different kinds of structures have been studied: quantum wells grown along the (110) direction, bo...
The spin transport and dynamics of optically injected spin polarized carri- ers are studied with a h...
International audienceWe have used a polarized spatially resolved microluminescence technique to inv...
We have investigated the dynamics of the ambipolar transport of photogenerated electrons and holes i...
The oscillating piezoelectric field of a surface acoustic wave (SAW) is employed to transport photoe...
The oscillating piezoelectric fields accompanying surface acoustic waves are able to transport charg...
The ambipolar transport of photogenerated electron-hole pairs by surface acoustic waves (SAWs) in co...
Surface acoustic waves (SAWs) have been used to transport single electrons across long distances of ...
We demonstrate the optically detected long-range (>100 µm) ambipolar transport of photogenerated ele...
International audienceWe have investigated charge and spin transport in n-type metallic GaAs nanowir...
We have investigated the dynamics of photogenerated carriers in GaAs quantum wires during their tran...
This work is dedicated to the study of spin dynamics in systems based on the semiconductor gallium a...
Surface acoustic waves (SAWs) travel on the surface of a material and have an amplitude that decays ...
The spin transport and dynamics of optically injected spin polarized carri- ers are studied with a h...
International audienceWe have used a polarized spatially resolved microluminescence technique to inv...
We have investigated the dynamics of the ambipolar transport of photogenerated electrons and holes i...
The oscillating piezoelectric field of a surface acoustic wave (SAW) is employed to transport photoe...
The oscillating piezoelectric fields accompanying surface acoustic waves are able to transport charg...
The ambipolar transport of photogenerated electron-hole pairs by surface acoustic waves (SAWs) in co...
Surface acoustic waves (SAWs) have been used to transport single electrons across long distances of ...
We demonstrate the optically detected long-range (>100 µm) ambipolar transport of photogenerated ele...
International audienceWe have investigated charge and spin transport in n-type metallic GaAs nanowir...
We have investigated the dynamics of photogenerated carriers in GaAs quantum wires during their tran...
This work is dedicated to the study of spin dynamics in systems based on the semiconductor gallium a...
Surface acoustic waves (SAWs) travel on the surface of a material and have an amplitude that decays ...
The spin transport and dynamics of optically injected spin polarized carri- ers are studied with a h...
International audienceWe have used a polarized spatially resolved microluminescence technique to inv...
We have investigated the dynamics of the ambipolar transport of photogenerated electrons and holes i...