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Universal Amplitude Ratios in the Critical Two-Dimensional Ising Model on a Torus

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arxiv cond-mat/9904038 v2 pith:TQQQHDPV submitted 1999-04-02 cond-mat.stat-mech hep-lathep-th

classification cond-mat.stat-mechhep-lathep-th
keywords ratiostorusamplitudefirstfourisingmodelsymmetric
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Using results from conformal field theory, we compute several universal amplitude ratios for the two-dimensional Ising model at criticality on a symmetric torus. These include the correlation-length ratio x^\star = \lim_{L\to\infty} \xi(L)/L and the first four magnetization moment ratios V_{2n} = <{\cal M}^{2n}>/<{\cal M}^2>^n. As a corollary we get the first four renormalized 2n-point coupling constants for the massless theory on a symmetric torus, G_{2n}^*. We confirm these predictions by a high-precision Monte Carlo simulation.

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  1. Shaping Lattice through irrelevant perturbation: Ising model

    hep-th 2019-08 conditional novelty 6.0 of 10

    The deviation of the critical square lattice Ising model from the Ising CFT is governed by a spin-4 T^2 perturbation with coupling g = (2π^2/7N^2)(1 - e^{-8iu}), verified exactly at order 1/N^2 for multiple state families.

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