Adjoint fermion zero-modes for SU(N) calorons
arXiv:0905.0645 · doi:10.1088/1126-6708/2009/06/065
Abstract
We derive analytic formulas for the zero-modes of the Dirac equation in the adjoint representation in the background field of Q=1 SU(N) calorons. Solutions with various boundary conditions are obtained, including the physically most relevant cases of periodic and antiperiodic ones. The latter are essential ingredients in a semiclassical treatment of finite temperature supersymmetric Yang-Mills theory. A detailed discussion of adjoint zero-modes in several other contexts is also presented.
40 latex pages and 5 eps figures
References in corpus (9)
- Center-stabilized Yang-Mills theory: confinement and large volume independence
- Abelian duality, confinement, and chiral symmetry breaking in QCD(adj)
- Dual quark condensate and dressed Polyakov loops
- Finite size phase transitions in QCD with adjoint fermions
- Confining ensemble of dyons
- Phase diagrams of SU(N) gauge theories with fermions in various representations
- Calorons and dyons at the thermal phase transition analyzed by overlap fermions
- Cautionary remarks on the moduli space metric for multi-dyon simulations
- Gluino zero-modes for calorons at finite temperature