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Self-consistent evolution of magnetic fields and chiral asymmetry in the early Universe

We show that the evolution of magnetic fields in a primordial plasma, filled with Standard Model particles, at temperatures T > 10 MeV is strongly affected by the quantum chiral anomaly -- an effect that has been neglected previously. Although reactions equilibrating left and right-chiral electro...

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Detalles Bibliográficos
Autores principales: Boyarsky, Alexey, Froehlich, Juerg, Ruchayskiy, Oleg
Lenguaje:eng
Publicado: 2011
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevLett.108.031301
http://cds.cern.ch/record/1382880
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author Boyarsky, Alexey
Froehlich, Juerg
Ruchayskiy, Oleg
author_facet Boyarsky, Alexey
Froehlich, Juerg
Ruchayskiy, Oleg
author_sort Boyarsky, Alexey
collection CERN
description We show that the evolution of magnetic fields in a primordial plasma, filled with Standard Model particles, at temperatures T > 10 MeV is strongly affected by the quantum chiral anomaly -- an effect that has been neglected previously. Although reactions equilibrating left and right-chiral electrons are in deep thermal equilibrium for T < 80 TeV, an asymmetry between these particle develops in the presence of strong magnetic fields. This results in magnetic helicity transfer from shorter to longer scales. This also leads to an effective generation of lepton asymmetry that may survive in the plasma down to temperatures T ~ 10 MeV, which may strongly affect many processes in the early Universe. Although we report our results for the Standard Model, they are likely to play an important role also in its extensions.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2011
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spelling cern-13828802019-09-30T06:29:59Zdoi:10.1103/PhysRevLett.108.031301http://cds.cern.ch/record/1382880engBoyarsky, AlexeyFroehlich, JuergRuchayskiy, OlegSelf-consistent evolution of magnetic fields and chiral asymmetry in the early UniverseAstrophysics and AstronomyWe show that the evolution of magnetic fields in a primordial plasma, filled with Standard Model particles, at temperatures T > 10 MeV is strongly affected by the quantum chiral anomaly -- an effect that has been neglected previously. Although reactions equilibrating left and right-chiral electrons are in deep thermal equilibrium for T < 80 TeV, an asymmetry between these particle develops in the presence of strong magnetic fields. This results in magnetic helicity transfer from shorter to longer scales. This also leads to an effective generation of lepton asymmetry that may survive in the plasma down to temperatures T ~ 10 MeV, which may strongly affect many processes in the early Universe. Although we report our results for the Standard Model, they are likely to play an important role also in its extensions.arXiv:1109.3350CERN-PH-TH-2011-231oai:cds.cern.ch:13828802011-09-16
spellingShingle Astrophysics and Astronomy
Boyarsky, Alexey
Froehlich, Juerg
Ruchayskiy, Oleg
Self-consistent evolution of magnetic fields and chiral asymmetry in the early Universe
title Self-consistent evolution of magnetic fields and chiral asymmetry in the early Universe
title_full Self-consistent evolution of magnetic fields and chiral asymmetry in the early Universe
title_fullStr Self-consistent evolution of magnetic fields and chiral asymmetry in the early Universe
title_full_unstemmed Self-consistent evolution of magnetic fields and chiral asymmetry in the early Universe
title_short Self-consistent evolution of magnetic fields and chiral asymmetry in the early Universe
title_sort self-consistent evolution of magnetic fields and chiral asymmetry in the early universe
topic Astrophysics and Astronomy
url https://dx.doi.org/10.1103/PhysRevLett.108.031301
http://cds.cern.ch/record/1382880
work_keys_str_mv AT boyarskyalexey selfconsistentevolutionofmagneticfieldsandchiralasymmetryintheearlyuniverse
AT froehlichjuerg selfconsistentevolutionofmagneticfieldsandchiralasymmetryintheearlyuniverse
AT ruchayskiyoleg selfconsistentevolutionofmagneticfieldsandchiralasymmetryintheearlyuniverse