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Representations of the Virasoro algebra from lattice models

1993/12/17 by W. M. Koo, H. Saleur · 2 citations
Physics and Astronomy · #hep-th

paper · pdf · doi:10.1016/0550-3213(94)90018-3

published as Nucl.Phys. B426 (1994) 459-504 · 52 pages

arxiv created 1993/12/17 · arxiv updated 2009/11/30

Abstract

We investigate in details how the Virasoro algebra appears in the scaling limit of the simplest lattice models of XXZ or RSOS type. Our approach is straightforward but to our knowledge had never been tried so far. We simply formulate a conjecture for the lattice stress-energy tensor motivated by the exact derivation of lattice global Ward identities. We then check that the proper algebraic relations are obeyed in the scaling limit. The latter is under reasonable control thanks to the Bethe-ansatz solution. The results, which are mostly numerical for technical reasons, are remarkably precise. They are also corroborated by exact pieces of information from various sources, in particular Temperley-Lieb algebra representation theory. Most features of the Virasoro algebra (like central term, null vectors, metric properties...) can thus be observed using the lattice models. This seems of general interest for lattice field theory, and also more specifically for finding relations between conformal invariance and lattice integrability, since basis for the irreducible representations of the Virasoro algebra should now follow (at least in principle) from Bethe-ansatz computations.

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