Nature of the physical problem versity of Belfast, N. Ireland (see application form in this The program calculates the average action per plaquette for issue) SU(4) lattice gauge theory. Gauge theories on a lattice were originally proposed by Wilson [1] and Polyakov [2] for the Computer: CDC CYBER 2
Can the Monte Carlo method for lattice gauge theory calculations be effectively vectorized?
โ Scribed by D. Barkai; K.J.M. Moriarty
- Publisher
- Elsevier Science
- Year
- 1982
- Tongue
- English
- Weight
- 668 KB
- Volume
- 27
- Category
- Article
- ISSN
- 0010-4655
No coin nor oath required. For personal study only.
โฆ Synopsis
Random access to data and recursive properties of the numerical procedure are both obstacles in the way of vectorizing current lattice gauge theory calculations. In this paper we show how these problems may be overcome on the CDC CYBER 205 to provide impressive reductions in the processing time required. Details of our experience and some future plans are also discussed.
๐ SIMILAR VOLUMES
Lattice gauge theory is a technique for studying quantum field theory free of divergences. All the Monte Carlo computer calculations up to now have been performed on scalar machines. A technique has been developed for effectively vectorizing this class of Monte Carlo problems. The key for vectorizin
Title of program: LATI'ICE plaquette for SU(6)/Z 6 lattice gauge theory. By considering quantum field theory on a space-time lattice [1,2], the ultra-Catalogue number: ACEK violet divergences of the theory are regulated through the finite lattice spacing. The continuum theory results can be obtained
We describe a compact, optimized algorithm for analyzing the mutual geometric relations between links and elementary squares in a d-dimensional lattice. The algorithm is used to compute plaquettes in Monte Carlo simulations of gauge field dynamics. In such kind of applications our algorithm, due to