Confining dyon gas with finite-volume effects under control

Bruckmann F, Dinter S, Ilgenfritz E-M, Maier B, Müller-Preussker M, Wagner M (2012)
Physical Review D 85(3).

Journal Article | Published | English

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Abstract
As an approach to describe the long-range properties of non-Abelian gaugetheories at non-zero temperature $T < T_c$, we consider a non-interactingensemble of dyons (magnetic monopoles) with non-trivial holonomy. We showanalytically, that the quark-antiquark free energy from the Polyakov loopcorrelator grows linearly with the distance, and how the string tension scaleswith the dyon density. In numerical treatments, the long-range tails of thedyon fields cause severe finite-volume effects. Therefore, we demonstrate theapplication of Ewald's summation method to this system. Finite-volume effectsare shown to be under control, which is a crucial requirement for numericalstudies of interacting dyon ensembles.
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Bruckmann F, Dinter S, Ilgenfritz E-M, Maier B, Müller-Preussker M, Wagner M. Confining dyon gas with finite-volume effects under control. Physical Review D. 2012;85(3).
Bruckmann, F., Dinter, S., Ilgenfritz, E. - M., Maier, B., Müller-Preussker, M., & Wagner, M. (2012). Confining dyon gas with finite-volume effects under control. Physical Review D, 85(3).
Bruckmann, F., Dinter, S., Ilgenfritz, E. - M., Maier, B., Müller-Preussker, M., and Wagner, M. (2012). Confining dyon gas with finite-volume effects under control. Physical Review D 85.
Bruckmann, F., et al., 2012. Confining dyon gas with finite-volume effects under control. Physical Review D, 85(3).
F. Bruckmann, et al., “Confining dyon gas with finite-volume effects under control”, Physical Review D, vol. 85, 2012.
Bruckmann, F., Dinter, S., Ilgenfritz, E.-M., Maier, B., Müller-Preussker, M., Wagner, M.: Confining dyon gas with finite-volume effects under control. Physical Review D. 85, (2012).
Bruckmann, Falk, Dinter, Simon, Ilgenfritz, Ernst-Michael, Maier, Benjamin, Müller-Preussker, Michael, and Wagner, Marc. “Confining dyon gas with finite-volume effects under control”. Physical Review D 85.3 (2012).
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