We present a signed particle computational approach for the Wigner transport model and use it to analyze the electron state dynamics in quantum wires focusing on the effect of surface roughness. Usually surface roughness is considered as a scattering model, accounted for by the Fermi Golden Rule, which relies on approximations like statistical averaging and in the case of quantum wires incorporates quantum corrections based on the mode space approach. We provide a novel computational approach to enable physical analysis of these assumptions in terms of phase space and particles. Utilized is the signed particles model of Wigner evolution, which, besides providing a full quantum description of the electron dynamics, enables intuitive insig...
The aim of this work is to investigate some of the properties of one- and two-dimensional systems, i...
[[abstract]]The effective Hamiltonian for two-dimensional quantum wells with rough interfaces is for...
This thesis reports our work on transport related problems in mesoscopic physics using analytical as...
We present a signed particle computational approach for the Wigner transport model and use it to ana...
In the present work we study, by means of numerical simulations, the coherent propagation of electro...
The influence of electron scattering by rough boundaries on electrical conductivity of quantum wires...
Ando’s model provides a rigorous quantum mechanical framework for electron-surface roughness scatter...
The effects due to electron scattering by rough boundaries on the electrical conductivity of quantum...
In the present work we study, by means of numerical simulations, the coherent propagation of electro...
In this work, we address theoretically the influence of red and white Gaussian noise for electronic ...
The influence of interface electron scattering on electron mobility in semiconducting quantum wells ...
abstract: One dimensional (1D) and quasi-one dimensional quantum wires have been a subject of both t...
We use the Hartree-Fock method to study an interacting one-dimensional electron system on a finite w...
Boundary effects play an essential role in determining the physical properties of semiconductor quan...
We developed a formalism within the linear-response theory to investigate the transport through a qu...
The aim of this work is to investigate some of the properties of one- and two-dimensional systems, i...
[[abstract]]The effective Hamiltonian for two-dimensional quantum wells with rough interfaces is for...
This thesis reports our work on transport related problems in mesoscopic physics using analytical as...
We present a signed particle computational approach for the Wigner transport model and use it to ana...
In the present work we study, by means of numerical simulations, the coherent propagation of electro...
The influence of electron scattering by rough boundaries on electrical conductivity of quantum wires...
Ando’s model provides a rigorous quantum mechanical framework for electron-surface roughness scatter...
The effects due to electron scattering by rough boundaries on the electrical conductivity of quantum...
In the present work we study, by means of numerical simulations, the coherent propagation of electro...
In this work, we address theoretically the influence of red and white Gaussian noise for electronic ...
The influence of interface electron scattering on electron mobility in semiconducting quantum wells ...
abstract: One dimensional (1D) and quasi-one dimensional quantum wires have been a subject of both t...
We use the Hartree-Fock method to study an interacting one-dimensional electron system on a finite w...
Boundary effects play an essential role in determining the physical properties of semiconductor quan...
We developed a formalism within the linear-response theory to investigate the transport through a qu...
The aim of this work is to investigate some of the properties of one- and two-dimensional systems, i...
[[abstract]]The effective Hamiltonian for two-dimensional quantum wells with rough interfaces is for...
This thesis reports our work on transport related problems in mesoscopic physics using analytical as...