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Preliminary performance evaluations of the determinant quantum Monte Carlo simulations for multi-core CPU and many-core GPU
Conference paper   Peer reviewed

Preliminary performance evaluations of the determinant quantum Monte Carlo simulations for multi-core CPU and many-core GPU

Quey-Liang Kao and Che-Rung Lee
International Journal of Computational Science and Engineering, Vol.9(1-2), pp.34-43
2014

Abstract

GPU Graphics processing unit Multi-core CPU Numerical simulation PPE Preliminary performance evaluation Quantum Monte Carlo simulation
The diversity of architectural designs and the programming styles of emerging computational hardware have created a wide search spectrum for the performance optimisation in the development of next generation high-performance software. Preliminary performance evaluations (PPE) on various computational platforms are essential to provide useful guidelines for proper software design choices. In this paper, we study the performance of the numerical kernels of the determinant quantum Monte Carlo (DQMC) simulations for two popular computing processors: multi-core CPU and GPU. Two algorithms, the Loh's method and the SOF algorithm, with different implementations and problem configurations, are tested to explore the hardware characteristics, such as scalability and processor utilisation. The results of this PPE that show the favoured algorithms and applicable parameter ranges on those two platforms can provide useful technical information not only for this particular computation, but also for all applications that use similar computation kernels.Copyright © 2014 Inderscience Enterprises Ltd.

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