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The universal properties of the electroweak phase transition

The first order electroweak phase transition in the Standard Model turns into a regular cross-over at a critical Higgs mass m_{H,c} approximately 75 GeV. At the critical point the transition is of second order. We make a detailed investigation of the critical properties of the electroweak theory at...

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Detalles Bibliográficos
Autores principales: Rummukainen, K., Kajantie, K., Laine, M., Shaposhnikov, Mikhail E., Tsypin, M.
Lenguaje:eng
Publicado: 1998
Materias:
Acceso en línea:http://cds.cern.ch/record/365513
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author Rummukainen, K.
Kajantie, K.
Laine, M.
Shaposhnikov, Mikhail E.
Tsypin, M.
author_facet Rummukainen, K.
Kajantie, K.
Laine, M.
Shaposhnikov, Mikhail E.
Tsypin, M.
author_sort Rummukainen, K.
collection CERN
description The first order electroweak phase transition in the Standard Model turns into a regular cross-over at a critical Higgs mass m_{H,c} approximately 75 GeV. At the critical point the transition is of second order. We make a detailed investigation of the critical properties of the electroweak theory at the critical point, and we find that the transition falls into the 3d Ising universality class. The continuum limit extrapolation of the critical Higgs mass is m_{H,c} = 72(2) GeV, which implies that there is no electroweak phase transition in the Standard Model.
id cern-365513
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1998
record_format invenio
spelling cern-3655132023-03-14T18:44:28Zhttp://cds.cern.ch/record/365513engRummukainen, K.Kajantie, K.Laine, M.Shaposhnikov, Mikhail E.Tsypin, M.The universal properties of the electroweak phase transitionParticle Physics - PhenomenologyThe first order electroweak phase transition in the Standard Model turns into a regular cross-over at a critical Higgs mass m_{H,c} approximately 75 GeV. At the critical point the transition is of second order. We make a detailed investigation of the critical properties of the electroweak theory at the critical point, and we find that the transition falls into the 3d Ising universality class. The continuum limit extrapolation of the critical Higgs mass is m_{H,c} = 72(2) GeV, which implies that there is no electroweak phase transition in the Standard Model.The first order electroweak phase transition in the Standard Model turns into a regular cross-over at a critical Higgs mass m_{H,c} approximately 75 GeV. At the critical point the transition is of second order. We make a detailed investigation of the critical properties of the electroweak theory at the critical point, and we find that the transition falls into the 3d Ising universality class. The continuum limit extrapolation of the critical Higgs mass is m_{H,c} = 72(2) GeV, which implies that there is no electroweak phase transition in the Standard Model.hep-ph/9809435NORDITA-98-69-HEoai:cds.cern.ch:3655131998-09-18
spellingShingle Particle Physics - Phenomenology
Rummukainen, K.
Kajantie, K.
Laine, M.
Shaposhnikov, Mikhail E.
Tsypin, M.
The universal properties of the electroweak phase transition
title The universal properties of the electroweak phase transition
title_full The universal properties of the electroweak phase transition
title_fullStr The universal properties of the electroweak phase transition
title_full_unstemmed The universal properties of the electroweak phase transition
title_short The universal properties of the electroweak phase transition
title_sort universal properties of the electroweak phase transition
topic Particle Physics - Phenomenology
url http://cds.cern.ch/record/365513
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