In the context of the spectral action and the noncommutative geometry approach to the standard model, we build a model based on a larger symmetry. With this grand symmetry it is natural to have the scalar field necessary to obtain the Higgs mass in the vicinity of 126 GeV. This larger symmetry mixes gauge and spin degrees of freedom without introducing extra fermions. Requiring the noncommutative space to be an almost commutative geometry (i.e. the product of manifold by a finite dimensional internal space) gives conditions for the breaking of this grand symmetry to the standard model. \ua9 2014 SISSA
Noncommutative spectral geometry offers a purely geometric explanation for the standard model of str...
This PhD thesis aims at combining the framework of noncommutative geometry and supersymmetry. A part...
In noncommutative geometry (NCG) the spectral action principle predicts the standard model (SM) part...
In the context of the spectral action and the noncommutative geometry approach to the standard model...
In the context of the spectral action and the noncommutative geometry approach to the standard model...
Grand symmetry models in noncommutative geometry have been introduced to explain how to generate min...
11 pages, 1 figure, 3 tablesThe values of the Higgs mass are obtained for two possibilities of exten...
In the noncommutative geometry approach to the standard model, an extra scalar field \u3c3-initially...
In the context of the spectral action and the noncommutative geometry approach to the physical funda...
Revised version for publication in J.Phys.A with corrected Higgs massesWe will present an extension ...
The values of the Higgs mass are obtained for two possibilities of extending the standard model in a...
Noncommutative spectral geometry offers a purely geometric explanation for the standard model of str...
Noncommutative spectral geometry offers a purely geometric explanation for the standard model of str...
Noncommutative spectral geometry offers a purely geometric explanation for the standard model of str...
Noncommutative spectral geometry offers a purely geometric explanation for the standard model of str...
Noncommutative spectral geometry offers a purely geometric explanation for the standard model of str...
This PhD thesis aims at combining the framework of noncommutative geometry and supersymmetry. A part...
In noncommutative geometry (NCG) the spectral action principle predicts the standard model (SM) part...
In the context of the spectral action and the noncommutative geometry approach to the standard model...
In the context of the spectral action and the noncommutative geometry approach to the standard model...
Grand symmetry models in noncommutative geometry have been introduced to explain how to generate min...
11 pages, 1 figure, 3 tablesThe values of the Higgs mass are obtained for two possibilities of exten...
In the noncommutative geometry approach to the standard model, an extra scalar field \u3c3-initially...
In the context of the spectral action and the noncommutative geometry approach to the physical funda...
Revised version for publication in J.Phys.A with corrected Higgs massesWe will present an extension ...
The values of the Higgs mass are obtained for two possibilities of extending the standard model in a...
Noncommutative spectral geometry offers a purely geometric explanation for the standard model of str...
Noncommutative spectral geometry offers a purely geometric explanation for the standard model of str...
Noncommutative spectral geometry offers a purely geometric explanation for the standard model of str...
Noncommutative spectral geometry offers a purely geometric explanation for the standard model of str...
Noncommutative spectral geometry offers a purely geometric explanation for the standard model of str...
This PhD thesis aims at combining the framework of noncommutative geometry and supersymmetry. A part...
In noncommutative geometry (NCG) the spectral action principle predicts the standard model (SM) part...