Noncommutative Geometry and the standard model with neutrino mixing
arXiv:hep-th/0608226 · doi:10.1088/1126-6708/2006/11/081
Abstract
We show that allowing the metric dimension of a space to be independent of its KO-dimension and turning the finite noncommutative geometry F-- whose product with classical 4-dimensional space-time gives the standard model coupled with gravity--into a space of KO-dimension 6 by changing the grading on the antiparticle sector into its opposite, allows to solve three problems of the previous noncommutative geometry interpretation of the standard model of particle physics: The finite geometry F is no longer put in "by hand" but a conceptual understanding of its structure and a classification of its metrics is given. The fermion doubling problem in the fermionic part of the action is resolved. The spectral action of our joint work with Chamseddine now automatically generates the full standard model coupled with gravity with neutrino mixing and see-saw mechanism for neutrino masses. The predictions of the Weinberg angle and the Higgs scattering parameter at unification scale are the same as in our joint work but we also find a mass relation (to be imposed at unification scale).
Typos removed, to appear in JHEP
References in corpus (1)
Cited by in corpus (17)
- A Lorentzian version of the non-commutative geometry of the standard model of particle physics
- Why the Standard Model
- Conceptual Explanation for the Algebra in the Noncommutative Approach to the Standard Model
- Noncommutative geometry and lower dimensional volumes in Riemannian geometry
- Almost-Commutative Geometries Beyond the Standard Model II: New Colours
- Early Universe models from Noncommutative Geometry
- Almost-Commutative Geometries Beyond the Standard Model III: Vector Doublets
- Almost-Commutative Geometry, massive Neutrinos and the Orientability Axiom in KO-Dimension 6
- Seesaw and noncommutative geometry
- Thermodynamics on Fuzzy Spacetime
- On the noncommutative standard model
- Why Renormalizable NonCommutative Quantum Field Theories?
- Finite temperature corrections and embedded strings in noncommutative geometry and the standard model with neutrino mixing
- Internal Space for the Noncommutative Geometry Standard Model and Strings
- The Inverse Seesaw Mechanism in Noncommutative Geometry
- Krajewski diagrams and the Standard Model
- Electromagnetic Dualities on Noncommutative Space-Time and Symplectic Formalisms