Studying Quarks and Gluons On Mimd Parallel Computers

Author:

Bernard Claude1,Ogilvie Michael C.1,DeGrand Thomas A.2,DeTar Carleton E.3,Gottlieb Steven A.4,Krasnitz A.4,Sugar R.L.5,Toussaint D.6

Affiliation:

1. Washington University, St. Louis, Missouri

2. University of Colorado, Boulder, Colorado

3. University of Utah, Salt Lake City, Utah

4. Indiana University, Bloomington, Indiana

5. University of California, Santa Barbara, California

6. University of Arizona, Tucson, Arizona

Abstract

Numerical simulations of interacting quarks and glu ons may be the best way to calculate the structure of protons and neutrons, as well as the nature of the very early universe or the interiors of neutron stars. Such simulations are limited by the availability of computer power. We are carrying out a program of simulations on multiple instruction, multiple data (MIMD) parallel computers. We describe here the goals of this project, discuss the way in which the computations are adapted to parallel computers and the performance they achieve, and present a few preliminary results.

Publisher

SAGE Publications

Reference12 articles.

1. The APE computer: An array processor optimized for lattice gauge theory simulations

2. Avico, N., Battista, F., Cabasino, S., et al. 1990. The APE 100 Project. In Computing for high luminosity and high intensity facilities, edited by J. Lillberg and M. Oothoudt. New York: American Institute of Physics, p. 549.

3. QCD machines, present and future

4. A Very Fast Parallel Processor

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