Monte Carlo calculations in lattice gauge theory
Journal Article
·
· AIP Conf. Proc.; (United States)
I review recent progress in numerical studies of the Feynman path integral for non-Abelian gauge theories. In the quarkless theory, numerical relations between the glueball mass, the confinement potential, and the scale of asymptotic freedom have been obtained. Renormalization group analysis has confirmed that the Gell-Mann Low function for the lattice SU(2) theory of Wilson has no non-trivial zeros. New phase transitions have been found in SU(4) and SU(5) gauge theories. These may be an artifact of the Wilson form for the action.
- Research Organization:
- Brookhaven National Lab. (BNL), Upton, NY (United States)
- OSTI ID:
- 6633693
- Journal Information:
- AIP Conf. Proc.; (United States), Vol. 74:1
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
72 PHYSICS OF ELEMENTARY PARTICLES AND FIELDS
LATTICE FIELD THEORY
GAUGE INVARIANCE
MONTE CARLO METHOD
FEYNMAN PATH INTEGRAL
QUANTUM CHROMODYNAMICS
RENORMALIZATION
SU-2 GROUPS
FIELD THEORIES
INTEGRALS
INVARIANCE PRINCIPLES
LIE GROUPS
QUANTUM FIELD THEORY
SU GROUPS
SYMMETRY GROUPS
645400* - High Energy Physics- Field Theory
645301 - High Energy Physics- Particle Invariance Principles & Symmetries- General- (-1987)
LATTICE FIELD THEORY
GAUGE INVARIANCE
MONTE CARLO METHOD
FEYNMAN PATH INTEGRAL
QUANTUM CHROMODYNAMICS
RENORMALIZATION
SU-2 GROUPS
FIELD THEORIES
INTEGRALS
INVARIANCE PRINCIPLES
LIE GROUPS
QUANTUM FIELD THEORY
SU GROUPS
SYMMETRY GROUPS
645400* - High Energy Physics- Field Theory
645301 - High Energy Physics- Particle Invariance Principles & Symmetries- General- (-1987)