Finite Temperature Bosonic Closed Strings: Thermal Duality and the Kosterlitz Thouless Transition
arXiv:hep-th/0105110 · doi:10.1103/PhysRevD.65.066008
Abstract
We elucidate the properties of a gas of free closed bosonic strings in thermal equilibrium. Our starting point is the intensive generating functional of connected one-loop closed vacuum string graphs given by the Polyakov path integral. Invariance of the path integral under modular transformations gives a thermal duality invariant expression for the free energy of free closed strings at finite temperature. The free bosonic string gas exhibits a self-dual Kosterlitz-Thouless phase transition. The thermodynamic potentials of the gas of free bosonic closed strings are shown to exhibit an infinite hierarchy of thermal self-duality relations. Note Added (Sep 2005).
22pgs. Note Added (Sep 2005), clarifying conclusions