Abstract The Wigner equation represents a promising model for the simulation of electronic nanodevices, which allows the comprehension and prediction of quantum mechanical phenomena in terms of quasi-distribution functions. During these years, a Monte Carlo technique for the solution of this kinetic equation has been developed, based on the generation and annihilation of signed particles. This technique can be deeply understood in terms of the theory of pure jump processes with a general state space, producing a class of stochastic algorithms. One of these algorithms has been validated successfully by numerical experiments on a benchmark test case
An analysis of the Wigner function for identical particles is presented. Four situations have been c...
Ce travail de thèse étudie les phénomènes quantiques qui apparaissent dans les dispositifs électroni...
A generalized Monte Carlo method for the solution of the Wigner transport equation in semiconductor ...
Abstract The Wigner transport equation can be solved stochastically by Monte Carlo t...
Recently a Monte Carlo method based on signed particles for time-dependent simulations of the Wigner...
The article addresses the achievable accuracy for a Monte Carlo sampling of Wigner functions in comb...
Stochastic particle methods for the numerical treatment of the Wigner equation are considered. The ...
Abstract-The Wigner equation represents a convenient approach when it comes to simulate the transien...
A class of stochastic algorithms for the numerical treatment of the Wigner equation is introduced. T...
The Wigner function provides a convenient description for single-particle quantum transport in space...
This book gives an overview of the quantum transport approaches for nanodevices and focuses on the W...
The quantum Liouville equation in the Wigner representation is solved numerically by using Monte Car...
A Quantum Monte Carlo method taking into account both interference and dissipation effects has been ...
Advancements and improvements in the Wigner function approach to quantum electron transport are revi...
The Wigner-function approach to the quantum theory of electron transport in mesoscopic systems is re...
An analysis of the Wigner function for identical particles is presented. Four situations have been c...
Ce travail de thèse étudie les phénomènes quantiques qui apparaissent dans les dispositifs électroni...
A generalized Monte Carlo method for the solution of the Wigner transport equation in semiconductor ...
Abstract The Wigner transport equation can be solved stochastically by Monte Carlo t...
Recently a Monte Carlo method based on signed particles for time-dependent simulations of the Wigner...
The article addresses the achievable accuracy for a Monte Carlo sampling of Wigner functions in comb...
Stochastic particle methods for the numerical treatment of the Wigner equation are considered. The ...
Abstract-The Wigner equation represents a convenient approach when it comes to simulate the transien...
A class of stochastic algorithms for the numerical treatment of the Wigner equation is introduced. T...
The Wigner function provides a convenient description for single-particle quantum transport in space...
This book gives an overview of the quantum transport approaches for nanodevices and focuses on the W...
The quantum Liouville equation in the Wigner representation is solved numerically by using Monte Car...
A Quantum Monte Carlo method taking into account both interference and dissipation effects has been ...
Advancements and improvements in the Wigner function approach to quantum electron transport are revi...
The Wigner-function approach to the quantum theory of electron transport in mesoscopic systems is re...
An analysis of the Wigner function for identical particles is presented. Four situations have been c...
Ce travail de thèse étudie les phénomènes quantiques qui apparaissent dans les dispositifs électroni...
A generalized Monte Carlo method for the solution of the Wigner transport equation in semiconductor ...