A carrier scattering approach is taken in an analysis of the affect on the dark current of extending the operating wavelength of conventional bound to continuum quantum-well intersubband photodetectors. It is found that both the sequential tunneling and the thermionic emission contributions to the dark current increase as the wavelength of the detector is extended from the mid- to far-infrared. Dark current designs rules are derived
Optimization of dark current is a key technological issue to be addressed in order to improve quantu...
Continuing research interest in quantum-well inter-subband-based devices can be associated with its ...
A fully quantum mechanical model for electron transport in quantum well infrared photodetectors is ...
Abstract—A carrier scattering approach is taken in an analysis of the affect on the dark current of ...
The thermionic emission and field induced emission components of the dark current in quantum well in...
We present a model for the description of dark IV curves in midinfrared quantum well infrared photod...
Full quantum mechanical scattering model of the dark current in quantum well intersubband photodetec...
A first-principles model of the photocurrent in quantum well infrared photodetectors (QWIPs) is deri...
A model is presented for the performance of quantum well infrared photodetectors (QWIPs) utilizing i...
Recent research activity in the long wavelength infrared spectral region has been driven by the wide...
A model is presented for the performance of quantum well infrared photodetectors (QWIPs) utilizing i...
We present a model for the description of dark IV curves in midinfrared quantum well infrared photod...
This work demonstrates the calculation of the dark current in quantum well infrared photodetectors (...
Abstract — In this work simple theoretical models are developed to ex-plore the physics of quantum w...
International audienceInfrared detectors based on a quantum cascade have been proposed to suppress t...
Optimization of dark current is a key technological issue to be addressed in order to improve quantu...
Continuing research interest in quantum-well inter-subband-based devices can be associated with its ...
A fully quantum mechanical model for electron transport in quantum well infrared photodetectors is ...
Abstract—A carrier scattering approach is taken in an analysis of the affect on the dark current of ...
The thermionic emission and field induced emission components of the dark current in quantum well in...
We present a model for the description of dark IV curves in midinfrared quantum well infrared photod...
Full quantum mechanical scattering model of the dark current in quantum well intersubband photodetec...
A first-principles model of the photocurrent in quantum well infrared photodetectors (QWIPs) is deri...
A model is presented for the performance of quantum well infrared photodetectors (QWIPs) utilizing i...
Recent research activity in the long wavelength infrared spectral region has been driven by the wide...
A model is presented for the performance of quantum well infrared photodetectors (QWIPs) utilizing i...
We present a model for the description of dark IV curves in midinfrared quantum well infrared photod...
This work demonstrates the calculation of the dark current in quantum well infrared photodetectors (...
Abstract — In this work simple theoretical models are developed to ex-plore the physics of quantum w...
International audienceInfrared detectors based on a quantum cascade have been proposed to suppress t...
Optimization of dark current is a key technological issue to be addressed in order to improve quantu...
Continuing research interest in quantum-well inter-subband-based devices can be associated with its ...
A fully quantum mechanical model for electron transport in quantum well infrared photodetectors is ...