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An optimized task-farm model to integrate reduced dimensionality Schrodinger equations on distrinuted memory architectures

Academic Article
Publication Date:
1999
abstract:
This paper investigates the parallelization of a quantum reactive scattering code that tackles the problem of integrating a two-dimensional Schrödinger equation. Computational codes integrating differential equations associated with quantum chemistry problems are known to be difficult to parallelize. A detailed examination of the algorithms and a careful analysis of possible sources for inefficiency is performed to devise a suitable parallelization strategy on MIMD-DM machines. As a result of the study, a task-farm model was adopted. The efficiency of the adopted parallel model is discussed with the help of several test calculations to pave the way for future work on full dimensional Schrödinger equations.
Iris type:
01.01 Articolo in rivista
Keywords:
Load balancing; MIMD-DM architecture; Task-farm model; Performance evaluation; Quantum reactive scattering; Differential equations; Network architecture and design
List of contributors:
Baraglia, Ranieri; Ferrini, Renato; Laforenza, Domenico
Authors of the University:
LAFORENZA DOMENICO
Handle:
https://iris.cnr.it/handle/20.500.14243/172352
Published in:
FUTURE GENERATION COMPUTER SYSTEMS
Journal
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URL

http://www.sciencedirect.com/science/article/pii/S0167739X98000569
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