4.7 Article

Smoothing algorithms for projected center-vortex gauge fields

Journal

PHYSICAL REVIEW D
Volume 106, Issue 1, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevD.106.014505

Keywords

-

Funding

  1. Australian Government
  2. Government of Western Australia
  3. Australian Government through University of Adelaide Partner Share [LE190100021]
  4. Australian Research Council [DP190102215, DP210103706]
  5. Pawsey Supercomputing Centre through the Pawsey Centre for Extreme Scale Readiness (PaCER) program

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This article studies the application of SU(3) gauge field smoothing methods to Z(3)-projected center-vortex gauge fields. The issues of proportionality and maintaining the underlying vortex structure are overcome using centrifuge preconditioning and vortex-preserved annealed smoothing methods, achieving the desired smoothness condition.
We study the application of SU(3) gauge field smoothing methods to Z(3)-projected center-vortex gauge fields. Due to the proportionality of the vortex links to the identity, naive applications of these methods are either ineffectual or limited in scope, containing subtle issues that are not obviously manifest. To overcome these issues, we introduce centrifuge preconditioning, a novel method applied prior to smoothing that rotates the links away from the center while preserving the fundamental structure of the vortex field. Additionally, the concept of vortex-preserved annealed smoothing is formulated to ensure the smoothing procedure maintains the underlying vortex structure. The application of these new methods in the context of annealed smoothing applied to vortex fields is shown to successfully achieve the desired smoothness condition required for the study of more advanced operators.

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