arXiv:1606.02742·v1·High Energy Physics — Lattice
A study of symmetry breaking in a relativistic Bose gas using the contraction algorithm
Andrei Alexandru🇺🇸 · Gokce Basar🇺🇸 · Paulo Bedaque🇺🇸 · Gregory W. Ridgway🇺🇸 · Neill C. Warrington🇺🇸
Abstract
A relativistic Bose gas at finite density suffers from a sign problem that makes direct numerical simulations not feasible. One possible solution to the sign problem is to re-express the path integral in terms of Lefschetz thimbles. Using this approach we study the relativistic Bose gas both in the symmetric phase (low-density) and the spontaneously broken phase (high-density). In the high-density phase we break explicitly the symmetry and determine the dependence of the order parameter on the breaking. We study the relative contributions of the dominant and sub-dominant thimbles in this phase. We find that the sub-dominant thimble only contributes substantially when the explicit symmetry breaking is small, a regime that is dominated by finite volume effects. In the regime relevant for the thermodynamic limit, this contribution is negligible.
Comments: 12 pages, 6 figures, 1 table