arXiv:1912.08654·v2·High Energy Physics — Theory
On the deformation of the compactified boson and its interpretation in Lattice Gauge Theory
Emanuele Beratto🇮🇹 · Marco Billo'🇮🇹 · Michele Caselle🇮🇹
Abstract
We study the effective string description of space-like Polyakov loop correlators at finite temperature with the goal of describing the behaviour of the space--like string tension in the vicinity of the deconfinement transition. To this end we construct the partition function of the Nambu-Goto effective string theory in presence of a compact transverse direction of length equal to the inverse temperature. We then show that, under particular conditions, our result can be interpreted as the partition function of the deformation of the 2d quantum field theory describing a compactified bosonic field and that this mapping allows a deeper insight on the behaviour of the space-like observables of the theory. In particular we show, by imposing that the spectrum of the model obeys the inviscid Burgers equation, that the deformations follow well defined trajectories in the parameter space of the model, where is the string tension, which are characterized by a constant value of the dimensionless compactification radius . We discuss the potential usefulness of these results for studying the space--like string tension of the underlying Lattice Gauge Theory and its behaviour across the deconfinement transition.
Comments: 28 pages, 2 figures. V2: expanded comments in sections 2.2, 2.3 and 4