Minimal twist for the Standard Model in noncommutative geometry: The field content

Noncommutative geometry provides both a unified description of the Standard Model of particle physics together with Einstein-Hilbert action (in Euclidean signature) and some tools to go beyond the Standard Model. In this paper, we extend to the full noncommutative geometry of the Standard Model the...

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Published in:Physical review. D Vol. 104; no. 2; p. 1
Main Authors: Filaci, Manuele, Martinetti, Pierre, Pesco, Simone
Format: Journal Article
Language:English
Published: College Park American Physical Society 15.07.2021
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ISSN:2470-0010, 2470-0029
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Abstract Noncommutative geometry provides both a unified description of the Standard Model of particle physics together with Einstein-Hilbert action (in Euclidean signature) and some tools to go beyond the Standard Model. In this paper, we extend to the full noncommutative geometry of the Standard Model the twist (in the sense of Connes-Moscovici) initially worked out for the electroweak sector and the free Dirac operator only. Namely, we apply the twist also to the strong interaction sector and the finite part of the Dirac operator. To do so, we are forced to take into account a violation of the twisted first-order condition. As a result, we still obtain the extra scalar field required to stabilize the electroweak vacuum and fit the Higgs mass, but it now has two chiral components. We also get the additive field of 1-forms already pointed out in the electroweak model, but with a richer structure. Finally, we obtain a pair of Higgs doublets, which are expected to combine into a single Higgs doublet in the action formula, as will be investigated in the second part of this work.
AbstractList Noncommutative geometry provides both a unified description of the Standard Model of particle physics together with Einstein-Hilbert action (in Euclidean signature) and some tools to go beyond the Standard Model. In this paper, we extend to the full noncommutative geometry of the Standard Model the twist (in the sense of Connes-Moscovici) initially worked out for the electroweak sector and the free Dirac operator only. Namely, we apply the twist also to the strong interaction sector and the finite part of the Dirac operator. To do so, we are forced to take into account a violation of the twisted first-order condition. As a result, we still obtain the extra scalar field required to stabilize the electroweak vacuum and fit the Higgs mass, but it now has two chiral components. We also get the additive field of 1-forms already pointed out in the electroweak model, but with a richer structure. Finally, we obtain a pair of Higgs doublets, which are expected to combine into a single Higgs doublet in the action formula, as will be investigated in the second part of this work.
ArticleNumber 025011
Author Filaci, Manuele
Martinetti, Pierre
Pesco, Simone
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Cites_doi 10.1007/JHEP11(2013)132
10.1007/JHEP01(2014)042
10.1007/BF02506388
10.4171/JNCG/108
10.1016/j.geomphys.2013.06.006
10.1007/s11040-016-9228-7
10.1007/s11005-016-0880-4
10.1063/5.0029789
10.1007/JHEP03(2018)089
10.1007/s11040-016-9219-8
10.1007/JHEP09(2012)104
10.4310/ATMP.2007.v11.n6.a3
10.1007/s11005-018-1099-3
10.1007/s11005-018-1120-x
10.1007/978-94-017-9162-5
10.1088/1367-2630/ab9709
10.1007/978-3-030-29597-4
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References PhysRevD.104.025011Cc19R1
A. Connes (PhysRevD.104.025011Cc1R1) 1994
A. Connes (PhysRevD.104.025011Cc2R1) 2021
PhysRevD.104.025011Cc13R1
PhysRevD.104.025011Cc11R1
PhysRevD.104.025011Cc12R1
A. Connes (PhysRevD.104.025011Cc24R1) 2008
A. H. Chamseddine (PhysRevD.104.025011Cc14R1) 2019
PhysRevD.104.025011Cc17R1
PhysRevD.104.025011Cc26R1
A. Connes (PhysRevD.104.025011Cc15R1) 2008; 38
PhysRevD.104.025011Cc16R1
PhysRevD.104.025011Cc20R1
PhysRevD.104.025011Cc10R1
PhysRevD.104.025011Cc3R1
W. van Suijlekom (PhysRevD.104.025011Cc25R1) 2015
PhysRevD.104.025011Cc4R1
PhysRevD.104.025011Cc5R1
PhysRevD.104.025011Cc6R1
PhysRevD.104.025011Cc8R1
PhysRevD.104.025011Cc9R1
References_xml – ident: PhysRevD.104.025011Cc12R1
  doi: 10.1007/JHEP11(2013)132
– volume-title: New Spaces in Physics: Formal and Conceptual Reflections
  year: 2021
  ident: PhysRevD.104.025011Cc2R1
– ident: PhysRevD.104.025011Cc26R1
  doi: 10.1007/JHEP01(2014)042
– ident: PhysRevD.104.025011Cc3R1
  doi: 10.1007/BF02506388
– ident: PhysRevD.104.025011Cc4R1
  doi: 10.4171/JNCG/108
– ident: PhysRevD.104.025011Cc13R1
  doi: 10.1016/j.geomphys.2013.06.006
– ident: PhysRevD.104.025011Cc16R1
  doi: 10.1007/s11040-016-9228-7
– ident: PhysRevD.104.025011Cc19R1
  doi: 10.1007/s11005-016-0880-4
– ident: PhysRevD.104.025011Cc8R1
  doi: 10.1063/5.0029789
– ident: PhysRevD.104.025011Cc17R1
  doi: 10.1007/JHEP03(2018)089
– ident: PhysRevD.104.025011Cc10R1
  doi: 10.1007/s11040-016-9219-8
– ident: PhysRevD.104.025011Cc6R1
  doi: 10.1007/JHEP09(2012)104
– volume-title: Noncommutative Geometry
  year: 1994
  ident: PhysRevD.104.025011Cc1R1
– ident: PhysRevD.104.025011Cc5R1
  doi: 10.4310/ATMP.2007.v11.n6.a3
– ident: PhysRevD.104.025011Cc20R1
  doi: 10.1007/s11005-018-1099-3
– ident: PhysRevD.104.025011Cc11R1
  doi: 10.1007/s11005-018-1120-x
– volume: 38
  start-page: 57
  year: 2008
  ident: PhysRevD.104.025011Cc15R1
  publication-title: Aspects Math. Friedt. Vieweg, Wiesbaden E
– volume-title: Noncommutative Geometry and Particle Physics
  year: 2015
  ident: PhysRevD.104.025011Cc25R1
  doi: 10.1007/978-94-017-9162-5
– volume-title: Noncommutative Geometry, Quantum Fields and Motives
  year: 2008
  ident: PhysRevD.104.025011Cc24R1
– ident: PhysRevD.104.025011Cc9R1
  doi: 10.1088/1367-2630/ab9709
– volume-title: Advances in Noncommutative Geometry
  year: 2019
  ident: PhysRevD.104.025011Cc14R1
  doi: 10.1007/978-3-030-29597-4
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Snippet Noncommutative geometry provides both a unified description of the Standard Model of particle physics together with Einstein-Hilbert action (in Euclidean...
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SubjectTerms Electroweak model
Euclidean geometry
Geometry
Operators (mathematics)
Particle physics
Scalars
Standard model (particle physics)
Strong interactions (field theory)
Title Minimal twist for the Standard Model in noncommutative geometry: The field content
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Volume 104
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