Parallelization of a Quantum-Classic Hybrid Model For Nanoscale Semiconductor Devices

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 transpor...

Full description

Bibliographic Details
Main Authors: Oscar Salas, Piero Lanucara, Paola Pietra, Sergio Rovida, Giovanni Sacchi
Format: Article
Language:English
Published: Universidad de Costa Rica 2011-07-01
Series:Revista de Matemática: Teoría y Aplicaciones
Online Access:https://revistas.ucr.ac.cr/index.php/matematica/article/view/2096
_version_ 1797714541636747264
author Oscar Salas
Piero Lanucara
Paola Pietra
Sergio Rovida
Giovanni Sacchi
author_facet Oscar Salas
Piero Lanucara
Paola Pietra
Sergio Rovida
Giovanni Sacchi
author_sort Oscar Salas
collection DOAJ
description 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.
first_indexed 2024-03-12T07:53:33Z
format Article
id doaj.art-120e1ca710bf4241a7289bb200e872a5
institution Directory Open Access Journal
issn 2215-3373
language English
last_indexed 2024-03-12T07:53:33Z
publishDate 2011-07-01
publisher Universidad de Costa Rica
record_format Article
series Revista de Matemática: Teoría y Aplicaciones
spelling doaj.art-120e1ca710bf4241a7289bb200e872a52023-09-02T20:23:19ZengUniversidad de Costa RicaRevista de Matemática: Teoría y Aplicaciones2215-33732011-07-0118223124810.15517/rmta.v18i2.20961994Parallelization of a Quantum-Classic Hybrid Model For Nanoscale Semiconductor DevicesOscar Salas0Piero Lanucara1Paola Pietra2Sergio Rovida3Giovanni Sacchi4Universidad Nacional de Costa Rica, Department of MathematicsConsortium for the Applications of Super-Computing for Universities and ResearchInstitute of Applied Mathematics and Information TechnologiesInstitute of Applied Mathematics and Information TechnologiesInstitute of Applied Mathematics and Information TechnologiesThe 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.https://revistas.ucr.ac.cr/index.php/matematica/article/view/2096
spellingShingle Oscar Salas
Piero Lanucara
Paola Pietra
Sergio Rovida
Giovanni Sacchi
Parallelization of a Quantum-Classic Hybrid Model For Nanoscale Semiconductor Devices
Revista de Matemática: Teoría y Aplicaciones
title Parallelization of a Quantum-Classic Hybrid Model For Nanoscale Semiconductor Devices
title_full Parallelization of a Quantum-Classic Hybrid Model For Nanoscale Semiconductor Devices
title_fullStr Parallelization of a Quantum-Classic Hybrid Model For Nanoscale Semiconductor Devices
title_full_unstemmed Parallelization of a Quantum-Classic Hybrid Model For Nanoscale Semiconductor Devices
title_short Parallelization of a Quantum-Classic Hybrid Model For Nanoscale Semiconductor Devices
title_sort parallelization of a quantum classic hybrid model for nanoscale semiconductor devices
url https://revistas.ucr.ac.cr/index.php/matematica/article/view/2096
work_keys_str_mv AT oscarsalas parallelizationofaquantumclassichybridmodelfornanoscalesemiconductordevices
AT pierolanucara parallelizationofaquantumclassichybridmodelfornanoscalesemiconductordevices
AT paolapietra parallelizationofaquantumclassichybridmodelfornanoscalesemiconductordevices
AT sergiorovida parallelizationofaquantumclassichybridmodelfornanoscalesemiconductordevices
AT giovannisacchi parallelizationofaquantumclassichybridmodelfornanoscalesemiconductordevices