Published February 14, 1994
| Version v1
Journal article
Staggered fermions for chiral gauge theories: test on a two-dimensional axial-vector model
Creators
- 1. Inst. of Theoretical Physics, Univ. of Amsterdam (Netherlands)
- 2. Univ. of California, San Diego, Dept. of Physics, La Jolla, CA (United States)
Description
As a first step towards constructing chiral models on the lattice with staggered fermions, we study a U(1) model with axial-vector coupling to an external gauge field in two dimensions. In our approach gauge invariance is broken, but it is restored in the classical continuum limit. We find that the continuum divergence relations for the vector and axial-vector currents are reproduced, up to contact terms, which we determine analytically. The current divergence relations are also studied numerically for smooth external gauge fields with topological charge zero. We furthermore investigate the effect of fluctuating gauge transformations and of gauge configurations with non-trivial topological charge. (orig.)
Additional details
Publishing Information
- Journal Title
- Nuclear Physics. B
- Journal Volume
- 414
- Journal Issue
- 1-2
- Journal Page Range
- p. 73-92.
- ISSN
- 0550-3213
- CODEN
- NUPBBO
INIS
- Country of Publication
- Netherlands
- Country of Input or Organization
- Netherlands
- INIS RN
- 25050460
- Subject category
- S72: PHYSICS OF ELEMENTARY PARTICLES AND FIELDS;
- Descriptors DEI
- ACTION INTEGRAL; ASYMPTOTIC SOLUTIONS; AXIAL-VECTOR CURRENTS; CHIRALITY; COUPLING; CURRENT DIVERGENCES; DEGREES OF FREEDOM; EUCLIDEAN SPACE; FERMIONS; FEYNMAN DIAGRAM; FLUCTUATIONS; GAUGE INVARIANCE; LAGRANGIAN FIELD THEORY; LATTICE FIELD THEORY; SYMMETRY BREAKING; TOPOLOGICAL MAPPING; TOPOLOGY; TWO-DIMENSIONAL CALCULATIONS; UNIFIED GAUGE MODELS; VECTOR CURRENTS; VECTOR FIELDS; WARD IDENTITY
- Descriptors DEC
- ALGEBRAIC CURRENTS; CONSTRUCTIVE FIELD THEORY; CURRENTS; DIAGRAMS; FIELD THEORIES; INFORMATION; INTEGRALS; INVARIANCE PRINCIPLES; MAPPING; MATHEMATICAL MODELS; MATHEMATICAL SPACE; MATHEMATICS; PARTICLE MODELS; PARTICLE PROPERTIES; QUANTUM FIELD THEORY; RIEMANN SPACE; SPACE; TRANSFORMATIONS; VARIATIONS