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      Effective Quantum Field Theory for the Thermodynamical Bethe Ansatz

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          Abstract

          We construct an effective Quantum Field Theory for the wrapping effects in 1+1 dimensional models of factorised scattering. The recently developed graph-theoretical approach to TBA gives the perturbative desctiption of this QFT. For the sake of simplicity we limit ourselves to scattering matrices for a single neutral particle and no bound state poles, such as the sinh-Gordon one. On the other hand, in view of applications to AdS/CFT, we do not assume that the scattering matrix is of difference type. The effective QFT involves both bosonic and fermionic fields and possesses a symmetry which makes it one-loop exact. The corresponding path integral localises to a critical point determined by the TBA equation.

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          Thermodynamics of a One‐Dimensional System of Bosons with Repulsive Delta‐Function Interaction

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            Volume dependence of the energy spectrum in massive quantum field theories

            M LUSCHER (1986)
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              Theory of nonabelian goldstone bosons in two dimensions

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                Author and article information

                Journal
                17 November 2019
                Article
                1911.07343
                8d0400ee-a20c-4c93-bc26-ffeb24b9d58c

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

                History
                Custom metadata
                82B23
                22 pages, 4 figures
                hep-th cond-mat.stat-mech

                Condensed matter,High energy & Particle physics
                Condensed matter, High energy & Particle physics

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