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arxiv: 1809.09593 · v3 · submitted 2018-09-25 · ✦ hep-th · math-ph· math.MP

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The textrm{T}bar{textrm{T}} perturbation and its geometric interpretation

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classification ✦ hep-th math-phmath.MP
keywords textrmdeformedfieldgenericgeometricperturbationsine-gordonsolutions
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Starting from the recently-discovered $\textrm{T}\bar{\textrm{T}}$-perturbed Lagrangians, we prove that the deformed solutions to the classical EoMs for bosonic field theories are equivalent to the unperturbed ones but for a specific field-dependent local change of coordinates. This surprising geometric outcome is fully consistent with the identification of $\textrm{T}\bar{\textrm{T}}$-deformed 2D quantum field theories as topological JT gravity coupled to generic matter fields. Although our conclusion is valid for generic interacting potentials, it first emerged from a detailed study of the sine-Gordon model and in particular from the fact that solitonic pseudo-spherical surfaces embedded in $\mathbb R^3$ are left invariant by the deformation. Analytic and numerical results concerning the perturbation of specific sine-Gordon soliton solutions are presented.

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Cited by 2 Pith papers

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  1. On $\sqrt{T\overline{T}}$ deformed pathways: CFT to CCFT

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