arXiv · hep-th/0203155
Twisted Eguchi-Kawai Reduced Chiral Models
Abstract
We study the twisted Eguchi-Kawai (TEK) reduction procedure for large-N unitary matrix lattice models. In particular, we consider the case of two-dimensional principal chiral models, and use numerical Monte Carlo (MC) simulations to check the conjectured equivalence of TEK reduced model and standard lattice model in the large-N limit. The MC results are compared with the large-N limit of lattice principal chiral models to verify the supposed equivalence. The consistency of the TEK reduction procedure is verified in the strong-coupling region, i.e. for $β<β_c$ where $β_c$ is the location of the large-N phase transition. On the other hand, in the weak-coupling regime $β>β_c$, relevant for the continuum limit, our MC results do not support the equivalence of the large-N limits of the lattice chiral model and the corresponding TEK reduction. The implications for the correspondence between TEK model and noncommutative field theory are also discussed.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Stefano Profumo, Ettore Vicari. 2002-03-18. Twisted Eguchi-Kawai Reduced Chiral Models. https://doi.org/10.1088/1126-6708%2F2002%2F05%2F014
Cite the original work for its findings. Save a collection to share your selection of sources.