We show how the increase in the Instanton-dyon density can explain both Confinement and Chiral symmetry breaking. We simulate an ensemble of 64 interacting Instanton-dyons for 2 colors and 0 or 2 quark flavors. We find that at low temperatures, the high density of dyons prefer a symmetric density, which leads to the confining value of the Polyakov Loop. At the same time the Chiral condensate is highly sensitive to the Polyakov Loop. As the Polyakov Loop gets close to the confining value, the Chiral condensate develops a non-zero expectation value, thus breaking Chiral symmetry
We present a semiclassical approach to the SU(N) Yang–Mills theory whose partition function at nonze...
In this work we attempt to achieve a better understanding of the interrelation between the chiral ph...
SUMMARY In QCD with adjoint fermions (aQCD) the deconfining transition takes place at a lower temp...
We show how the increase in the Instanton-dyon density can explain both Confinement and Chiral symme...
Paradigm shift in gauge topology at finite temperatures, from the instantons to their constituents –...
Paradigm shift in gauge topology at finite temperatures, from the instantons to their constituents –...
Paradigm shift in gauge topology at finite temperatures, from the instantons to their constituents –...
The purpose of this study is to show that monopoles induce the chiral symmetry breaking. In order to...
Paradigme shift in gauge topology, from instantons to their constituents – instanton-dyons – has rec...
Paradigme shift in gauge topology, from instantons to their constituents – instanton-dyons – has rec...
Paradigme shift in gauge topology, from instantons to their constituents – instanton-dyons – has rec...
In QCD with adjoint fermions, the deconfining transition takes place at a lower temperature than the...
The mechanism of confinement in Yang-Mills theories remains a challenge to our understanding of nonp...
This thesis concerns two aspects of the relation between chiral symmetry breaking and confinement. T...
The functional determinant is computed exactly for quantum oscillations about periodic instantons wi...
We present a semiclassical approach to the SU(N) Yang–Mills theory whose partition function at nonze...
In this work we attempt to achieve a better understanding of the interrelation between the chiral ph...
SUMMARY In QCD with adjoint fermions (aQCD) the deconfining transition takes place at a lower temp...
We show how the increase in the Instanton-dyon density can explain both Confinement and Chiral symme...
Paradigm shift in gauge topology at finite temperatures, from the instantons to their constituents –...
Paradigm shift in gauge topology at finite temperatures, from the instantons to their constituents –...
Paradigm shift in gauge topology at finite temperatures, from the instantons to their constituents –...
The purpose of this study is to show that monopoles induce the chiral symmetry breaking. In order to...
Paradigme shift in gauge topology, from instantons to their constituents – instanton-dyons – has rec...
Paradigme shift in gauge topology, from instantons to their constituents – instanton-dyons – has rec...
Paradigme shift in gauge topology, from instantons to their constituents – instanton-dyons – has rec...
In QCD with adjoint fermions, the deconfining transition takes place at a lower temperature than the...
The mechanism of confinement in Yang-Mills theories remains a challenge to our understanding of nonp...
This thesis concerns two aspects of the relation between chiral symmetry breaking and confinement. T...
The functional determinant is computed exactly for quantum oscillations about periodic instantons wi...
We present a semiclassical approach to the SU(N) Yang–Mills theory whose partition function at nonze...
In this work we attempt to achieve a better understanding of the interrelation between the chiral ph...
SUMMARY In QCD with adjoint fermions (aQCD) the deconfining transition takes place at a lower temp...