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Conference Paper/Proceeding/Abstract 952 views

Real-time dynamics in the 1+1 D abelian Higgs model with fermions

Gert Aarts Orcid Logo, Jan Smit

Nuclear Physics B - Proceedings Supplements, Volume: "83", Pages: 586 - 588

Swansea University Author: Gert Aarts Orcid Logo

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Abstract

In approximate dynamical equations, inhomogenous classical (mean) gauge and Higgs fields are coupled to quantized fermions. The equations are solved numerically on a spacetime lattice. The fermions appear to equilibrate according to the Fermi-Dirac distribution with time-dependent temperature and ch...

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Published in: Nuclear Physics B - Proceedings Supplements
ISSN: 09205632
Published: 1999
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URI: https://cronfa.swan.ac.uk/Record/cronfa22620
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first_indexed 2015-07-21T11:25:51Z
last_indexed 2018-02-09T05:00:58Z
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spelling 2015-07-21T11:29:13.8298016 v2 22620 2015-07-21 Real-time dynamics in the 1+1 D abelian Higgs model with fermions 1ba0dad382dfe18348ec32fc65f3f3de 0000-0002-6038-3782 Gert Aarts Gert Aarts true false 2015-07-21 SPH In approximate dynamical equations, inhomogenous classical (mean) gauge and Higgs fields are coupled to quantized fermions. The equations are solved numerically on a spacetime lattice. The fermions appear to equilibrate according to the Fermi-Dirac distribution with time-dependent temperature and chemical potential. Conference Paper/Proceeding/Abstract Nuclear Physics B - Proceedings Supplements "83" 586 588 09205632 30 6 1999 1999-06-30 10.1016/S0920-5632(00)91746-8 http://inspirehep.net/record/506626 @articleAarts:1999rw, author = "Aarts, Gert and Smit, Jan", title = "Real time dynamics in the (1+1)-D Abelian Higgs model with fermions", journal = "Nucl.Phys.Proc.Suppl.", volume = "83", pages = "586-588", doi = "10.1016/S0920-5632(00)91746-8", year = "2000", eprint = "hep-lat/9909040", archivePrefix = "arXiv", primaryClass = "hep-lat", reportNumber = "ITFA-99-23, THU-99-26", SLACcitation = "%%CITATION = HEP-LAT/9909040;%%", COLLEGE NANME Physics COLLEGE CODE SPH Swansea University 2015-07-21T11:29:13.8298016 2015-07-21T10:15:13.4256759 Faculty of Science and Engineering School of Biosciences, Geography and Physics - Physics Gert Aarts 0000-0002-6038-3782 1 Jan Smit 2
title Real-time dynamics in the 1+1 D abelian Higgs model with fermions
spellingShingle Real-time dynamics in the 1+1 D abelian Higgs model with fermions
Gert Aarts
title_short Real-time dynamics in the 1+1 D abelian Higgs model with fermions
title_full Real-time dynamics in the 1+1 D abelian Higgs model with fermions
title_fullStr Real-time dynamics in the 1+1 D abelian Higgs model with fermions
title_full_unstemmed Real-time dynamics in the 1+1 D abelian Higgs model with fermions
title_sort Real-time dynamics in the 1+1 D abelian Higgs model with fermions
author_id_str_mv 1ba0dad382dfe18348ec32fc65f3f3de
author_id_fullname_str_mv 1ba0dad382dfe18348ec32fc65f3f3de_***_Gert Aarts
author Gert Aarts
author2 Gert Aarts
Jan Smit
format Conference Paper/Proceeding/Abstract
container_title Nuclear Physics B - Proceedings Supplements
container_volume "83"
container_start_page 586
publishDate 1999
institution Swansea University
issn 09205632
doi_str_mv 10.1016/S0920-5632(00)91746-8
college_str Faculty of Science and Engineering
hierarchytype
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/506626
document_store_str 0
active_str 0
description In approximate dynamical equations, inhomogenous classical (mean) gauge and Higgs fields are coupled to quantized fermions. The equations are solved numerically on a spacetime lattice. The fermions appear to equilibrate according to the Fermi-Dirac distribution with time-dependent temperature and chemical potential.
published_date 1999-06-30T03:26:47Z
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score 11.037144