With the progressive downscaling of device dimensions and the corresponding reduction of the signal-to-noise ratio, the effect of noise on the operation of nanoscale devices increases and thus particular care has to be devoted to its study. Here we numerically analyze the effect of one-dimensional and two-dimensional potential disorder on the shot noise of a device based on a semiconductor heterostructure and we show that only in very particular conditions the diffusive noise regime is reached, while in more general cases only a gradual increase of shot noise toward the full shot noise behavior of strongly localized systems is observed as the disorder increases
We analyze the effect of a random distribution of scatterers, satisfying the conditions for diffusiv...
Abstract. The current of ballistic nanoscale MOSFETs is expected to exhibit shot noise, essentially ...
We perform simulations, by means of an envelope-function-based approach, of shot noise in disordered...
With the progressive downscaling of device dimensions and the corresponding reduction of the signal-...
With the progressive downscaling of device dimensions and the corresponding reduction of the signal-...
We discuss the possibility of diffusive conduction and thus of suppression of shot noise by a factor...
We present a numerical model for shot-noise suppression in a semiconductor quantum wire, based on pa...
We present a numerical model for shot-noise suppression in a semiconductor quantum wire, based on pa...
We perform a numerical investigation of the effect of the disorder associated with randomly located ...
Following the intriguing results analytically obtained for the shot noise suppression in wide and sh...
Electronic noise, despite being a limiting factor in many applications of semiconductor devices and ...
Análisis de los ruidos de disparos en estructuras mesoscópicas.In this review we analyze shot-noise ...
We present a review on some aspects of shot noise research, mainly focusing on our own work in the fi...
We present a review on some aspects of shot noise research, mainly focusing on our own work in the fi...
In this review we analyze shot-noise suppression and enhancement in homogeneous semiconductor struct...
We analyze the effect of a random distribution of scatterers, satisfying the conditions for diffusiv...
Abstract. The current of ballistic nanoscale MOSFETs is expected to exhibit shot noise, essentially ...
We perform simulations, by means of an envelope-function-based approach, of shot noise in disordered...
With the progressive downscaling of device dimensions and the corresponding reduction of the signal-...
With the progressive downscaling of device dimensions and the corresponding reduction of the signal-...
We discuss the possibility of diffusive conduction and thus of suppression of shot noise by a factor...
We present a numerical model for shot-noise suppression in a semiconductor quantum wire, based on pa...
We present a numerical model for shot-noise suppression in a semiconductor quantum wire, based on pa...
We perform a numerical investigation of the effect of the disorder associated with randomly located ...
Following the intriguing results analytically obtained for the shot noise suppression in wide and sh...
Electronic noise, despite being a limiting factor in many applications of semiconductor devices and ...
Análisis de los ruidos de disparos en estructuras mesoscópicas.In this review we analyze shot-noise ...
We present a review on some aspects of shot noise research, mainly focusing on our own work in the fi...
We present a review on some aspects of shot noise research, mainly focusing on our own work in the fi...
In this review we analyze shot-noise suppression and enhancement in homogeneous semiconductor struct...
We analyze the effect of a random distribution of scatterers, satisfying the conditions for diffusiv...
Abstract. The current of ballistic nanoscale MOSFETs is expected to exhibit shot noise, essentially ...
We perform simulations, by means of an envelope-function-based approach, of shot noise in disordered...