We present an experimental and theoretical study of the carrier capture time into a semiconductor quantum well. We observe for the first time the predicted oscillations of the phonon emission induced capture time experimentally and found good agreement with theory. Calculations show that not only does the LO phonon emission induced capture time (ph capture) oscillate as a function of well width, but also the carrier-carrier scattering induced capture time (c-c capture) oscillates by more than an order of magnitude as a function of the active layer design. Recently, it has been shown that the carrier capture time is directly related to the modulation bandwidth in a quantum well laser. As a result, it might be possible to tailor the modulatio...
This dissertation concerns the high speed characteristics of semiconductor lasers. From analysis of ...
We report on an experimental study, using continuous-wave and time-resolved photoluminescence spectr...
The energy relaxation and the capture of free carriers in InxGa1—xAs/GaAs quantum wells have been in...
We present an experimental and theoretical study of the carrier capture time into a semiconductor qu...
We present an experimental and theoretical study of the carrier capture time into a semiconductor qu...
We present an experimental and theoretical study of the carrier capture time into a semiconductor qu...
An experimental and theoretical study of the carrier capture time into a semiconductor quantum well ...
We experimentally observed an oscillating carrier capture time as a function of quantum well thickne...
We have investigated the carrier capture mechanism in quantum well lasers and its relevance for devi...
We present an experimental and theoretical study of the carrier capture time into a semiconductor qu...
We present calculations of the carrier capture efficiency into various types of quantum well lasers....
We present an experimental and theoretical study of the carrier capture time into a semiconductor qu...
The quantum carrier capture time in a quantum well laser is calculated as a function of temperature ...
Contains fulltext : 14356.pdf (publisher's version ) (Open Access)59-6
The transport of carriers along the confinement region, the carrier capture into and the carrier esc...
This dissertation concerns the high speed characteristics of semiconductor lasers. From analysis of ...
We report on an experimental study, using continuous-wave and time-resolved photoluminescence spectr...
The energy relaxation and the capture of free carriers in InxGa1—xAs/GaAs quantum wells have been in...
We present an experimental and theoretical study of the carrier capture time into a semiconductor qu...
We present an experimental and theoretical study of the carrier capture time into a semiconductor qu...
We present an experimental and theoretical study of the carrier capture time into a semiconductor qu...
An experimental and theoretical study of the carrier capture time into a semiconductor quantum well ...
We experimentally observed an oscillating carrier capture time as a function of quantum well thickne...
We have investigated the carrier capture mechanism in quantum well lasers and its relevance for devi...
We present an experimental and theoretical study of the carrier capture time into a semiconductor qu...
We present calculations of the carrier capture efficiency into various types of quantum well lasers....
We present an experimental and theoretical study of the carrier capture time into a semiconductor qu...
The quantum carrier capture time in a quantum well laser is calculated as a function of temperature ...
Contains fulltext : 14356.pdf (publisher's version ) (Open Access)59-6
The transport of carriers along the confinement region, the carrier capture into and the carrier esc...
This dissertation concerns the high speed characteristics of semiconductor lasers. From analysis of ...
We report on an experimental study, using continuous-wave and time-resolved photoluminescence spectr...
The energy relaxation and the capture of free carriers in InxGa1—xAs/GaAs quantum wells have been in...