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Conference Paper/Proceeding/Abstract 779 views

Spontaneous breaking of discrete symmetries in QCD on a small volume

Agostino Patella, Claudio Pica, Biagio Lucini Orcid Logo

Volume: "957", Pages: 229 - 232

Swansea University Author: Biagio Lucini Orcid Logo

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DOI (Published version): 10.1063/1.2823768

Abstract

In a compact space with non-trivial cycles, for sufficiently small values of the compact dimensions, charge conjugation (C), spatial reflection (P) and time reversal (T) are spontaneously broken in QCD. The order parameter for the symmetry breaking is the trace of the Wilson line wrapping around the...

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Published: 2007
Online Access: http://inspirehep.net/record/760080
URI: https://cronfa.swan.ac.uk/Record/cronfa27929
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spelling 2016-05-14T16:42:08.2658676 v2 27929 2016-05-14 Spontaneous breaking of discrete symmetries in QCD on a small volume 7e6fcfe060e07a351090e2a8aba363cf 0000-0001-8974-8266 Biagio Lucini Biagio Lucini true false 2016-05-14 SMA In a compact space with non-trivial cycles, for sufficiently small values of the compact dimensions, charge conjugation (C), spatial reflection (P) and time reversal (T) are spontaneously broken in QCD. The order parameter for the symmetry breaking is the trace of the Wilson line wrapping around the compact dimension, which acquires an imaginary part in the broken phase. We show that a physical signature for the symmetry breaking is a persistent baryonic current wrapping in the compact directions. The existence of such a current is derived analytically at first order in perturbation theory and confirmed in the non-perturbative regime by lattice simulations. Conference Paper/Proceeding/Abstract "957" 229 232 30 9 2007 2007-09-30 10.1063/1.2823768 http://inspirehep.net/record/760080 COLLEGE NANME Mathematics COLLEGE CODE SMA Swansea University 2016-05-14T16:42:08.2658676 2016-05-14T16:42:08.0630663 Faculty of Science and Engineering School of Biosciences, Geography and Physics - Physics Agostino Patella 1 Claudio Pica 2 Biagio Lucini 0000-0001-8974-8266 3
title Spontaneous breaking of discrete symmetries in QCD on a small volume
spellingShingle Spontaneous breaking of discrete symmetries in QCD on a small volume
Biagio Lucini
title_short Spontaneous breaking of discrete symmetries in QCD on a small volume
title_full Spontaneous breaking of discrete symmetries in QCD on a small volume
title_fullStr Spontaneous breaking of discrete symmetries in QCD on a small volume
title_full_unstemmed Spontaneous breaking of discrete symmetries in QCD on a small volume
title_sort Spontaneous breaking of discrete symmetries in QCD on a small volume
author_id_str_mv 7e6fcfe060e07a351090e2a8aba363cf
author_id_fullname_str_mv 7e6fcfe060e07a351090e2a8aba363cf_***_Biagio Lucini
author Biagio Lucini
author2 Agostino Patella
Claudio Pica
Biagio Lucini
format Conference Paper/Proceeding/Abstract
container_volume "957"
container_start_page 229
publishDate 2007
institution Swansea University
doi_str_mv 10.1063/1.2823768
college_str Faculty of Science and Engineering
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hierarchy_top_id facultyofscienceandengineering
hierarchy_top_title Faculty of Science and Engineering
hierarchy_parent_id facultyofscienceandengineering
hierarchy_parent_title Faculty of Science and Engineering
department_str School of Biosciences, Geography and Physics - Physics{{{_:::_}}}Faculty of Science and Engineering{{{_:::_}}}School of Biosciences, Geography and Physics - Physics
url http://inspirehep.net/record/760080
document_store_str 0
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description In a compact space with non-trivial cycles, for sufficiently small values of the compact dimensions, charge conjugation (C), spatial reflection (P) and time reversal (T) are spontaneously broken in QCD. The order parameter for the symmetry breaking is the trace of the Wilson line wrapping around the compact dimension, which acquires an imaginary part in the broken phase. We show that a physical signature for the symmetry breaking is a persistent baryonic current wrapping in the compact directions. The existence of such a current is derived analytically at first order in perturbation theory and confirmed in the non-perturbative regime by lattice simulations.
published_date 2007-09-30T03:33:55Z
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score 10.993443