By Z. Y. Meng, T. C. Lang, S. Wessel, F. F. Assaad, A. Muramatsu (auth.), Wolfgang E. Nagel, Dietmar B. Kröner, Michael M. Resch (eds.)
This ebook provides the cutting-edge in simulation on supercomputers. prime researchers current effects completed on platforms of the excessive functionality Computing middle Stuttgart (HLRS) for the 12 months 2010. The studies disguise all fields of computational technology and engineering, starting from CFD to computational physics and chemistry to desktop technological know-how, with a distinct emphasis on industrially correct functions. featuring effects for either vector structures and microprocessor-based structures, the publication makes it attainable to check the functionality degrees and value of varied architectures. As HLRS operates the biggest NEC SX-8 vector process on the earth, this booklet supplies a good perception into the potential for vector structures, protecting the most equipment in excessive functionality computing. Its remarkable ends up in reaching the top functionality for construction codes are of specific curiosity for either scientists and engineers. The booklet incorporates a wealth of colour illustrations and tables.
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Additional resources for High Performance Computing in Science and Engineering '10: Transactions of the High Performance Computing Center, Stuttgart (HLRS) 2010
4 Massive Four-Loop Integrals In the second part of the project we deal with a diﬀerent class of diagrams, namely with massive four-loop vacuum diagrams. These diagrams again only depend on a single scale, now the mass of a heavy quark. H. K¨ uhn et al. quark currents. The main application of the heavy-quark correlators is the extraction of the mass of the involved heavy quark from experimental data of the production cross section of hadrons at an electron-positron collider. As an alternative the experimental data can be substituted by a direct calculation of the correlators on the lattice.
Phys. Rev. , 73(10):1432–1435, Sep 1994. 28. M. Walter, J. Akola, O. D. Jadzinsky, G. J. L. Whetten, H. Gr¨ onbeck, and H. H¨ akkinen. A uniﬁed view of ligand-protected gold clusters as superatom complexes. Proc. Nat. Acad. , 105(27):9157–9162, 2008. 29. M. Walter and M. Moseler. How to observe the oxidation of magnesia supported Pd clusters by scanning tunnelling microscopy. Accepted by Phys. Stat. Solidi, 2009. 30. M. Walter and M. Moseler. Ligand protected gold alloy clusters: doping the superatom.
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