Open Access
Issue |
EPJ Web Conf.
Volume 245, 2020
24th International Conference on Computing in High Energy and Nuclear Physics (CHEP 2019)
|
|
---|---|---|
Article Number | 06009 | |
Number of page(s) | 6 | |
Section | 6 - Physics Analysis | |
DOI | https://doi.org/10.1051/epjconf/202024506009 | |
Published online | 16 November 2020 |
- J. Biddle, J. Charvetto, W. Kamleh, D. Leinweber, H. Piercy, E. Puckridge, F. Stokes, et al., “Publicizing Lattice Field Theory through Visualization,” PoS LATTICE2018 (2019) 325, arXiv:1903.08308 [hep-lat]. [Google Scholar]
- D. B. Leinweber and E. Puckridge, Structure of the QCD Vacuum, 2019. https://youtu.be/WZgZI5vymiM. [Google Scholar]
- D. B. Leinweber and E. Puckridge, Structure of the QCD Vacuum, 2018. http://www.physics.adelaide.edu.au/cssm/lattice/QCDvacuum/ChromoElectroMagneticFields.mp4. [Google Scholar]
- G. ’t Hooft, “On the Phase Transition Towards Permanent Quark Confinement,” Nucl.Phys. B138 (1978) 1. [CrossRef] [MathSciNet] [Google Scholar]
- G. ’t Hooft, “A Property of Electric and Magnetic Flux in Nonabelian Gauge Theories,” Nucl.Phys. B153 (1979) 141. [CrossRef] [MathSciNet] [Google Scholar]
- A. O’Cais, W. Kamleh, K. Langfeld, B. Lasscock, D. Leinweber, P. Moran, A. Sternbeck, and L. von Smekal, “Preconditioning Maximal Center Gauge with Stout Link Smearing in SU(3),” Phys. Rev. D82 (2010) 114512, arXiv:0807.0264 [hep-lat]. [Google Scholar]
- K. Langfeld, “Vortex structures in pure SU(3) lattice gauge theory,” Phys. Rev. D69 (2004) 014503, arXiv:hep-lat/0307030 [hep-lat]. [Google Scholar]
- D. Trewartha, W. Kamleh, and D. Leinweber, “Connection between center vortices and instantons through gauge-field smoothing,” Phys. Rev. D92 no. 7, (2015) 074507, arXiv:1509.05518 [hep-lat]. [Google Scholar]
- J. Greensite, “The Confinement problem in lattice gauge theory,” Prog. Part. Nucl. Phys. 51 (2003) 1, arXiv:hep-lat/0301023 [hep-lat]. [Google Scholar]
- L. Del Debbio, M. Faber, J. Giedt, J. Greensite, and S. Olejnik, “Detection of center vortices in the lattice Yang-Mills vacuum,” Phys. Rev. D58 (1998) 094501, arXiv:hep-lat/9801027 [hep-lat]. [Google Scholar]
- P. O. Bowman, K. Langfeld, D. B. Leinweber, A. Sternbeck, L. von Smekal, and A. G. Williams, “Role of center vortices in chiral symmetry breaking in SU(3) gauge theory,” Phys. Rev. D84 (2011) 034501, arXiv:1010.4624 [hep-lat]. [Google Scholar]
- J. C. Biddle, W. Kamleh, and D. B. Leinweber, “Gluon propagator on a center-vortex background,” Phys. Rev. D98 no. 9, (2018) 094504, arXiv:1806.04305 [hep-lat]. [Google Scholar]
- K. Langfeld, H. Reinhardt, and J. Gattnar, “Gluon propagators and quark confinement,” Nucl. Phys. B621 (2002) 131–156, arXiv:hep-ph/0107141 [hep-ph]. [CrossRef] [MathSciNet] [Google Scholar]
- M. Quandt, H. Reinhardt, and G. Burgio, “The role of center vortices in Gribov’s confinement scenario,” Phys. Rev. D81 (2010), arXiv:1001.3699 [hep-lat]. [Google Scholar]
- P. O. Bowman, K. Langfeld, D. B. Leinweber, A. O’ Cais, A. Sternbeck, L. von Smekal, and A. G. Williams, “Center vortices and the quark propagator in SU(2) gauge theory,” Phys. Rev. D78 (2008) 054509, arXiv:0806.4219 [hep-lat]. [Google Scholar]
- D. Trewartha, W. Kamleh, and D. Leinweber, “Evidence that centre vortices underpin dynamical chiral symmetry breaking in SU(3) gauge theory,” Phys. Lett. B747 (2015) 373–377, arXiv:1502.06753 [hep-lat]. [CrossRef] [Google Scholar]
- D. Trewartha, W. Kamleh, and D. Leinweber, “Centre vortex removal restores chiral symmetry,” J. Phys. G44 no. 12, (2017) 125002, arXiv:1708.06789 [hep-lat]. [Google Scholar]
- E.-A. O’Malley, W. Kamleh, D. Leinweber, and P. Moran, “SU(3) centre vortices underpin confinement and dynamical chiral symmetry breaking,” Phys. Rev. D86 (2012) 054503, arXiv:1112.2490 [hep-lat]. [Google Scholar]
- L. Del Debbio, M. Faber, J. Greensite, and S. Olejnik, “Center dominance and Z(2) vortices in SU(2) lattice gauge theory,” Phys. Rev. D55 (1997) 2298–2306, hep-lat/9610005. [Google Scholar]
- K. Langfeld, H. Reinhardt, and O. Tennert, “Confinement and scaling of the vortex vacuum of SU(2) lattice gauge theory,” Phys. Lett. B419 (1998) 317–321, arXiv:hep-lat/9710068. [CrossRef] [Google Scholar]
- J. C. Biddle, W. Kamleh, and D. B. Leinweber, “Visualisation of Centre Vortex Structure,” arXiv:1912.09531 [hep-lat]. [Google Scholar]
- J. Biddle, W. Kamleh, D. Leinweber, and H. Piercy, Centre Vortices in the Gluon Field of the QCD Vacuum, 2019. https://youtu.be/CDdmx989quA. [Google Scholar]
- J. Biddle, W. Kamleh, D. Leinweber, and H. Piercy, Centre Vortices in the Gluon Field of the QCD Vacuum, 2018. http://www.physics.adelaide.edu.au/cssm/lattice/QCDvacuum/CentreVorticesTopQ.mp4. [Google Scholar]
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