Abstract :
P. GTwo improved superposition schemes for the construction of approximate multi-caloron–anti-caloron configurations, using exact single (anti-)caloron gauge fields as underlying building blocks, are introduced in this paper. The first improvement deals with possible monopole-Dirac string interactions between different calorons with non-trivial holonomy. The second one, based on the ADHM formalism, improves the (anti-)selfduality in the case of small caloron separations. It conforms with Shuryakʹs well-known ratio-ansatz when applied to instantons. Both superposition techniques provide a higher degree of (anti-)selfduality than the widely used sum-ansatz, which simply adds the (anti)caloron vector potentials in an appropriate gauge. Furthermore, the improved configurations (when discretized onto a lattice) are characterized by a higher stability when they are exposed to lattice cooling techniques.erhold, E.-M. Ilgenfritz, M. Müller-Preussker
Keywords :
Non-trivial holonomy , ADHM formalism , Yang–Mills theory , Finite temperature , Caloron solutions