In this paper, we present a model proposition of photo-SET (single electron photo-detector) aiming at detecting one by one electrons. In the first part of this work, we present the two blocs of the proposed photo-SET (reading and detection blocs). The device structure presented is consisting of two SETs capacitively coupled. In this model, the first SET (SET1) is supposed to read the charge whereas the detection bloc is represented by the second SET (SET2). In the second part, we investigate the effects of photoexcitation on Id-Vg curves and we present results obtained on the output photo-SET characteristics after variation of power illumination and response time
We propose a novel concept for a semiconductor-based single-photon detector for quantum information ...
Single-electron transistors (SETs) are ultra-sensitive charge sensors. Aiming to develop a radio-fre...
Owing to a few unique advantages, the double-dot single electron transistor has been proposed as an ...
In this paper, we present a model proposition of photo-SET (single electron photo-detector) aiming a...
In this paper we propose a new silicon nanowire photodetector model based on a single-electron trans...
This work investigates advanced single-electron transistor (SET) devices fordetection of charge moti...
The single electron transistor (SET) can detect a fraction of an electron of charge. It is a three t...
Capturing single photons through light–matter interactions is a fascinating and important topic for ...
GaAs is a light sensitive material, that optical as well as electronic components can be integrated ...
In this work, we present noise analysis in a Single Electron Photo-detector (photo-SET or nanopixel)...
We show the photo-ionisation of an individual erbium centre in silicon. A single-electron transistor...
This thesis will be divided into two parts. In the first part, theory and results of a novel system ...
International audienceIn this paper, we report the effect of optical power on interface state densit...
Single-electron transistor (SET) is a key element in our research field where device operation is ba...
A novel device for detection of single photons based on a GaAs/AlGaAs modulation doped field effect ...
We propose a novel concept for a semiconductor-based single-photon detector for quantum information ...
Single-electron transistors (SETs) are ultra-sensitive charge sensors. Aiming to develop a radio-fre...
Owing to a few unique advantages, the double-dot single electron transistor has been proposed as an ...
In this paper, we present a model proposition of photo-SET (single electron photo-detector) aiming a...
In this paper we propose a new silicon nanowire photodetector model based on a single-electron trans...
This work investigates advanced single-electron transistor (SET) devices fordetection of charge moti...
The single electron transistor (SET) can detect a fraction of an electron of charge. It is a three t...
Capturing single photons through light–matter interactions is a fascinating and important topic for ...
GaAs is a light sensitive material, that optical as well as electronic components can be integrated ...
In this work, we present noise analysis in a Single Electron Photo-detector (photo-SET or nanopixel)...
We show the photo-ionisation of an individual erbium centre in silicon. A single-electron transistor...
This thesis will be divided into two parts. In the first part, theory and results of a novel system ...
International audienceIn this paper, we report the effect of optical power on interface state densit...
Single-electron transistor (SET) is a key element in our research field where device operation is ba...
A novel device for detection of single photons based on a GaAs/AlGaAs modulation doped field effect ...
We propose a novel concept for a semiconductor-based single-photon detector for quantum information ...
Single-electron transistors (SETs) are ultra-sensitive charge sensors. Aiming to develop a radio-fre...
Owing to a few unique advantages, the double-dot single electron transistor has been proposed as an ...