International audienceIn this paper, we propose a hybrid classical-quantum approach to study the electron transport in strongly confined nanostructures. The device domain is made of an active zone (where quantum effects are strong) sandwiched between two electron reservoirs (where the transport is considered highly collisional). A one dimensional effective mass Schrödinger system is coupled with a drift-diffusion model, both taking into account the peculiarities due to the strong confinement and to the two dimensional transversal crystal structure. Interface conditions are built preserving the continuity of the total current. Self-consistent computations are performed coupling the hybrid transport equations with the resolution of a Poisson ...
Technological advances in device micro- and nano-fabrication over the past decade has enabled a vari...
In recent years, the understanding and accurate simulation of carbon nanotube-based transistors has ...
In the present work we study the electronic transport properties of finite length single-wall carbon...
In this paper, we propose a hybrid classical-quantum approach to study the electron transport in str...
International audienceIn this paper we derive by an entropy minimization technique a local Quantum D...
International audienceIn this paper we derive by an entropy minimization technique a local Quantum D...
We propose a hybrid classical-quantum model to study the motion of electrons in ultra-scaled confine...
Nous proposons un modèle hybride classique-quantique pour décrire le mouvement des électrons dans de...
Nous proposons un modèle hybride classique-quantique pour décrire le mouvement des électrons dans de...
Nous proposons un modèle hybride classique-quantique pour décrire le mouvement des électrons dans de...
Nous proposons un modèle hybride classique-quantique pour décrire le mouvement des électrons dans de...
Nous proposons un modèle hybride classique-quantique pour décrire le mouvement des électrons dans de...
International audienceThis paper is devoted to numerical simulations of electronic transport in nano...
A coupled quantum-classical model describing the transport of electrons confined in nanoscale semico...
International audienceWe consider one dimensional coupled classical-quantum models for quantum semic...
Technological advances in device micro- and nano-fabrication over the past decade has enabled a vari...
In recent years, the understanding and accurate simulation of carbon nanotube-based transistors has ...
In the present work we study the electronic transport properties of finite length single-wall carbon...
In this paper, we propose a hybrid classical-quantum approach to study the electron transport in str...
International audienceIn this paper we derive by an entropy minimization technique a local Quantum D...
International audienceIn this paper we derive by an entropy minimization technique a local Quantum D...
We propose a hybrid classical-quantum model to study the motion of electrons in ultra-scaled confine...
Nous proposons un modèle hybride classique-quantique pour décrire le mouvement des électrons dans de...
Nous proposons un modèle hybride classique-quantique pour décrire le mouvement des électrons dans de...
Nous proposons un modèle hybride classique-quantique pour décrire le mouvement des électrons dans de...
Nous proposons un modèle hybride classique-quantique pour décrire le mouvement des électrons dans de...
Nous proposons un modèle hybride classique-quantique pour décrire le mouvement des électrons dans de...
International audienceThis paper is devoted to numerical simulations of electronic transport in nano...
A coupled quantum-classical model describing the transport of electrons confined in nanoscale semico...
International audienceWe consider one dimensional coupled classical-quantum models for quantum semic...
Technological advances in device micro- and nano-fabrication over the past decade has enabled a vari...
In recent years, the understanding and accurate simulation of carbon nanotube-based transistors has ...
In the present work we study the electronic transport properties of finite length single-wall carbon...