Vacuum energy of the Bukhvostov-Lipatov model
Vladimir V. Bazhanov, Sergei L. Lukyanov, Boris A. Runov

TL;DR
This paper derives an exact formula for the vacuum energy of the Bukhvostov-Lipatov model, linking it to the sinh-Gordon equation and confirming its accuracy through multiple theoretical approaches.
Contribution
It provides a novel exact expression for the vacuum energy of the model using classical and quantum integrability methods.
Findings
The formula matches perturbation theory predictions at weak coupling.
The formula agrees with conformal perturbation theory at short distances.
The results are consistent with the Bethe ansatz solution.
Abstract
Bukhvostov and Lipatov have shown that weakly interacting instantons and anti-instantons in the non-linear sigma model in two dimensions are described by an exactly soluble model containing two coupled Dirac fermions. We propose an exact formula for the vacuum energy of the model for twisted boundary conditions, expressing it through a special solution of the classical sinh-Gordon equation. The formula perfectly matches predictions of the standard renormalized perturbation theory at weak couplings as well as the conformal perturbation theory at short distances. Our results also agree with the Bethe ansatz solution of the model. A complete proof the proposed expression for the vacuum energy based on a combination of the Bethe ansatz techniques and the classical inverse scattering transform method is presented in the second part of this work [40].
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