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Spontaneously Breaking Non-Abelian Gauge Symmetry in Non-Hermitian Field Theories

We generalize our previous formulation of gauge-invariant PT-symmetric field theories to include models with non-Abelian symmetries and discuss the extension to such models of the Englert-Brout-Higgs-Kibble mechanism for generating masses for vector bosons. As in the Abelian case, the non-Abelian ga...

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Detalles Bibliográficos
Autores principales: Alexandre, Jean, Ellis, John, Millington, Peter, Seynaeve, Dries
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevD.101.035008
http://cds.cern.ch/record/2693132
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author Alexandre, Jean
Ellis, John
Millington, Peter
Seynaeve, Dries
author_facet Alexandre, Jean
Ellis, John
Millington, Peter
Seynaeve, Dries
author_sort Alexandre, Jean
collection CERN
description We generalize our previous formulation of gauge-invariant PT-symmetric field theories to include models with non-Abelian symmetries and discuss the extension to such models of the Englert-Brout-Higgs-Kibble mechanism for generating masses for vector bosons. As in the Abelian case, the non-Abelian gauge fields are coupled to nonconserved currents. We present a consistent scheme for gauge fixing, demonstrating Becchi-Rouet-Stora-Tyutin invariance, and show that the particle spectrum and interactions are gauge invariant. We exhibit the masses that gauge bosons in the simplest two-doublet SU(2)×U(1) model acquire when certain scalar fields develop vacuum expectation values: they and scalar masses depend quartically on the non-Hermitian mass parameter μ. The bosonic mass spectrum differs substantially from that in a Hermitian two-doublet model. This non-Hermitian extension of the Standard Model opens a new direction for particle model building, with distinctive predictions to be explored further.
id cern-2693132
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
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spelling cern-26931322023-10-04T06:33:12Zdoi:10.1103/PhysRevD.101.035008http://cds.cern.ch/record/2693132engAlexandre, JeanEllis, JohnMillington, PeterSeynaeve, DriesSpontaneously Breaking Non-Abelian Gauge Symmetry in Non-Hermitian Field Theorieshep-phParticle Physics - Phenomenologyhep-thParticle Physics - TheoryWe generalize our previous formulation of gauge-invariant PT-symmetric field theories to include models with non-Abelian symmetries and discuss the extension to such models of the Englert-Brout-Higgs-Kibble mechanism for generating masses for vector bosons. As in the Abelian case, the non-Abelian gauge fields are coupled to nonconserved currents. We present a consistent scheme for gauge fixing, demonstrating Becchi-Rouet-Stora-Tyutin invariance, and show that the particle spectrum and interactions are gauge invariant. We exhibit the masses that gauge bosons in the simplest two-doublet SU(2)×U(1) model acquire when certain scalar fields develop vacuum expectation values: they and scalar masses depend quartically on the non-Hermitian mass parameter μ. The bosonic mass spectrum differs substantially from that in a Hermitian two-doublet model. This non-Hermitian extension of the Standard Model opens a new direction for particle model building, with distinctive predictions to be explored further.We generalise our previous formulation of gauge-invariant PT-symmetric field theories to include models with non-Abelian symmetries and discuss the extension to such models of the Englert-Brout-Higgs-Kibble mechanism for generating masses for vector bosons. As in the Abelian case, the non-Abelian gauge fields are coupled to non-conserved currents. We present a consistent scheme for gauge fixing, demonstrating Becchi-Rouet-Stora-Tyutin invariance, and show that the particle spectrum and interactions are gauge invariant. We exhibit the masses that gauge bosons in the simplest two-doublet SU(2)xU(1) model acquire when certain scalar fields develop vacuum expectation values: they and scalar masses depend quartically on the non-Hermitian mass parameter mu. The bosonic mass spectrum differs substantially from that in a Hermitian two-doublet model. This non-Hermitian extension of the Standard Model opens a new direction for particle model building, with distinctive predictions to be explored further.arXiv:1910.03985KCL-PH-TH/2019-76CERN-TH-2019-161oai:cds.cern.ch:26931322019-10-09
spellingShingle hep-ph
Particle Physics - Phenomenology
hep-th
Particle Physics - Theory
Alexandre, Jean
Ellis, John
Millington, Peter
Seynaeve, Dries
Spontaneously Breaking Non-Abelian Gauge Symmetry in Non-Hermitian Field Theories
title Spontaneously Breaking Non-Abelian Gauge Symmetry in Non-Hermitian Field Theories
title_full Spontaneously Breaking Non-Abelian Gauge Symmetry in Non-Hermitian Field Theories
title_fullStr Spontaneously Breaking Non-Abelian Gauge Symmetry in Non-Hermitian Field Theories
title_full_unstemmed Spontaneously Breaking Non-Abelian Gauge Symmetry in Non-Hermitian Field Theories
title_short Spontaneously Breaking Non-Abelian Gauge Symmetry in Non-Hermitian Field Theories
title_sort spontaneously breaking non-abelian gauge symmetry in non-hermitian field theories
topic hep-ph
Particle Physics - Phenomenology
hep-th
Particle Physics - Theory
url https://dx.doi.org/10.1103/PhysRevD.101.035008
http://cds.cern.ch/record/2693132
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AT ellisjohn spontaneouslybreakingnonabeliangaugesymmetryinnonhermitianfieldtheories
AT millingtonpeter spontaneouslybreakingnonabeliangaugesymmetryinnonhermitianfieldtheories
AT seynaevedries spontaneouslybreakingnonabeliangaugesymmetryinnonhermitianfieldtheories