Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1841498 | Nuclear Physics B | 2010 | 20 Pages |
Abstract
We study general two-dimensional σ-models which do not possess manifest Lorentz invariance. We show how demanding that Lorentz invariance is recovered as an emergent on-shell symmetry constrains these σ-models. The resulting actions have an underlying group-theoretic structure and resemble Poisson–Lie T-duality invariant actions. We consider the one-loop renormalization of these models and show that the quantum Lorentz anomaly is absent. We calculate the running of the couplings in general and show, with certain non-trivial examples, that this agrees with that of the T-dual models obtained classically from the duality invariant action. Hence, in these cases solving constraints before and after quantization are commuting operations.
Related Topics
Physical Sciences and Engineering
Mathematics
Mathematical Physics
Authors
K. Sfetsos, K. Siampos, Daniel C. Thompson,