Schwinger Model In Noncommutating Space-Time
arXiv:hep-th/0603050 · doi:10.1016/j.physletb.2006.05.049 10.1016/j.physletb.2006.11.004
Abstract
The 1+1 dimensional bosonised Schwinger model has been studied in a noncommutative scenario. The theory in the reduced phase space exhibits a massive boson interacting with a background. The emergence of this background interaction is a novel feature due to noncommutativity. The structure of the theory ensures unitarity and causality.
9 pages, Latex, errata added
Cited by in corpus (20)
- A note on the noncommutative correction to gravity
- Time-Space Noncommutativity in Gravitational Quantum Well scenario
- Time-dependent Aharonov-Bohm effect on the noncommutative space
- Quasinormal Modes in Noncommutative Schwarzschild black holes
- Light Propagation in a Background Field for Time-Space Noncommutativity and Axionic Noncommutative QED
- Galilean symmetry in noncommutative Gravitational Quantum Well
- On the question of deconfinement in noncommutative Schwinger Model
- Chiral Thirring-Wess model with Faddeevian Regularization
- On the mass spectrum of noncommutative Schwinger model in Euclidean space
- On the BRST and finite field dependent BRST of a model where vector and axial vector interaction get mixed up with different weight
- On the question of regular solitons in a Noncommutative Maxwell--Chern--Simons--Higgs model
- Chiral Thirring-Wess Model
- Källén-Lehmann representation of noncommutative quantum electrodynamics
- Perturbative effective action for the photon in noncommutative QED and exactness of the Schwinger mass
- Study of the photon's pole structure in the noncommutative Schwinger model
- Dynamical generation of mass in the noncommutative supersymmetric Schwinger model
- On the Poincaré and Gauge symmetry of a model where vector and axial vector interaction get mixed up with different weight
- Higher Derivative Operators in the Noncommutative Schwinger Model
- Quantum mechanics of a charged particle in a background magnetic field interacting with linearized gravitational waves
- Interaction of a circularly polarised gravitational wave with a charged particle in a static magnetic background