Parallelization of a quantum-classic hybrid model for Nanoscale Semiconductor devices

 

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Autoři: Salas, Oscar, Lanucara, Piero, Pietra, Paola, Rovida, Sergio, Sacchi, Giovanni
Médium: artículo original
Stav:Versión publicada
Datum vydání:2011
Popis:The expensive reengineering of the sequential software and the difficult parallel programming are two of the many technical and economic obstacles to the wide use of HPC. We investigate the chance to improve in a rapid way the performance of a numerical serial code for the simulation of the transport of a charged carriers in a Double-Gate MOSFET. We introduce the Drift-Diffusion-Schrödinger-Poisson (DDSP) model and we study a rapid parallelization strategy of the numerical procedure on shared memory architectures.
Země:Portal de Revistas UCR
Instituce:Universidad de Costa Rica
Repositorio:Portal de Revistas UCR
Jazyk:Inglés
OAI Identifier:oai:portal.ucr.ac.cr:article/2096
On-line přístup:https://revistas.ucr.ac.cr/index.php/matematica/article/view/2096
Klíčové slovo:Parallelization
Shared memory paradigm
Schrödinger equation
Drift-Difusion system
Subband model
Nanotransistor
Paralelezación
Paradigma de Memoria Compartida
Ecuación de Schrödinger
Sistemas Drift-Difusion
Modelo Subband
Nanotubos