We present ultrafast reflectivity measurements on the dynamics of optically excited free carriers in semiconductor microcavities. We observe that the relaxation dynamics of the switched cavity is strongly frequency dependent, which points towards multiple carrier populations. The interest in ultrafast all-optical switching of nano-photonic structures has rapidly increased due to the inherent speed of the process. This not only promises new developments in information technology [1-3] but also a better understanding in fundamental electrodynamics as well as in ultrafast cavity QED [4]. The fastest mechanisms for switching are, as recently shown, the electronic Kerr effect [5] and, as more commonly used, the excitation of free carriers [2,3,5...
We have switched GaAs/AlAs and AlGaAs/AlAs planar microcavities that operate in the “Original” (O) t...
We have switched GaAs/AlAs and AlGaAs/AlAs planar microcavities that operate in the “Original” (O) t...
We have switched GaAs/AlAs and AlGaAs/AlAs planar microcavities that operate in the "Original" (O) t...
We present ultrafast reflectivity measurements on the dynamics of optically excited free carriers in...
The authors study the ultrafast switching-on and -off of planar GaAs/AlAs microcavities. Up to 0.8% ...
We have performed ultrafast pump–probe experiments on a GaAs–AlAs microcavity with a resonance near ...
We have performed ultra fast pump-probe experiments on a GaAs-AlAs microcavity with a resonance near...
We perform frequency- and time-resolved all-optical switching of a GaAs-AlAs micropillar cavity usin...
In this thesis we study ultrafast all-optical switching of microcavities. We employ the electronic K...
In this thesis we study ultrafast all-optical switching of microcavities. We employ the electronic K...
We study the time-resolved reflectivity spectrum of a switched planar GaAs-AlAs microcavity. Between...
We have studied a GaAs–AlAs planar microcavity with a resonance near 1300 nm in the telecom range by...
We present ultrafast pump-probe reflectivity measurements on semiconductor microcavities with a reso...
In this work the interactions of carriers, electrons and holes, and photons in a semiconductor micro...
We present ultrafast pump-probe reflectivity measurements on semiconductor microcavities with a reso...
We have switched GaAs/AlAs and AlGaAs/AlAs planar microcavities that operate in the “Original” (O) t...
We have switched GaAs/AlAs and AlGaAs/AlAs planar microcavities that operate in the “Original” (O) t...
We have switched GaAs/AlAs and AlGaAs/AlAs planar microcavities that operate in the "Original" (O) t...
We present ultrafast reflectivity measurements on the dynamics of optically excited free carriers in...
The authors study the ultrafast switching-on and -off of planar GaAs/AlAs microcavities. Up to 0.8% ...
We have performed ultrafast pump–probe experiments on a GaAs–AlAs microcavity with a resonance near ...
We have performed ultra fast pump-probe experiments on a GaAs-AlAs microcavity with a resonance near...
We perform frequency- and time-resolved all-optical switching of a GaAs-AlAs micropillar cavity usin...
In this thesis we study ultrafast all-optical switching of microcavities. We employ the electronic K...
In this thesis we study ultrafast all-optical switching of microcavities. We employ the electronic K...
We study the time-resolved reflectivity spectrum of a switched planar GaAs-AlAs microcavity. Between...
We have studied a GaAs–AlAs planar microcavity with a resonance near 1300 nm in the telecom range by...
We present ultrafast pump-probe reflectivity measurements on semiconductor microcavities with a reso...
In this work the interactions of carriers, electrons and holes, and photons in a semiconductor micro...
We present ultrafast pump-probe reflectivity measurements on semiconductor microcavities with a reso...
We have switched GaAs/AlAs and AlGaAs/AlAs planar microcavities that operate in the “Original” (O) t...
We have switched GaAs/AlAs and AlGaAs/AlAs planar microcavities that operate in the “Original” (O) t...
We have switched GaAs/AlAs and AlGaAs/AlAs planar microcavities that operate in the "Original" (O) t...