Published 1987 | Version v1
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Lattice gauge theory on a parallel computer

Description

The results of several numerical simulations of QCD by Monte Carlo lattice gauge theory are presented. Studying the mesonic potential on a 204 lattice, we conclude that asymptotic scaling does not hold over the range 6.1 ≤ β ≤ 6.7, although we are not able to quantify the discrepancies. The effect of discrete rotational symmetry on physical parameters is examined and seems to modify the string tension by 15% at β = 6.1, while at β = 6.3 the change was less than 1%. The potential between three charges is studied and yields a string tension of .18 GeV2, consistent with mesonic calculations and relativized potential models. Contributions to the potential from low-energy string vibrations appear small in the range x ≤ .5 fm. We perform energy density measurements in the color fields surrounding both mesons and baryons, which provide strong evidence in favor of the dual superconductor picture of confinement. It is also suggested that the confining strings in the baryon meet at a central point rather than joining the quarks pairwise. Several algorithms are explored in an attempt to develop simulation methods which are able to directly account for the currents generated by color sources. The extension of the Langevin equation to complex degrees of freedom is derived leading to a Fokker-Planck equation for a complex 'Probability distribution'. Using this technique we are then able to calculate energy densities in U(1) gauge theory at large charge separations. The extension of the method to non-Abelian theories comes up against an unresolved problem in segregation for certain types of observable. 145 refs., 36 figs

Availability note (English)

MF available from INIS under the Report Number; Available from NTIS, PC A09/MF A01; 1 as DE87008771.

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Additional details

Publishing Information

Imprint Pagination
192 p.
Report number
DOE/ER/25009--411

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
18083637
Subject category
S71: CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS;
Resource subtype / Literary indicator
Thesis
Descriptors DEI
ALGORITHMS; FERMIONS; LANGEVIN EQUATION; LATTICE FIELD THEORY; MONTE CARLO METHOD; PARALLEL PROCESSING; POTENTIALS; QUANTUM CHROMODYNAMICS; QUARKS
Descriptors DEC
CONSTRUCTIVE FIELD THEORY; ELEMENTARY PARTICLES; EQUATIONS; FIELD THEORIES; POSTULATED PARTICLES; PROGRAMMING; QUANTUM FIELD THEORY

Optional Information

Notes
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