Dynamical Fermion Masses Under the Influence of Kaluza-Klein Fermions and a Bulk Abelian Gauge Field
The dynamical fermion mass generation on a 3-brane in the 5D space-time is discussed in a model with bulk fermions in interaction with fermions on the brane assuming the presence of a constant abelian gauge field component \(A_5\) in the bulk. We calculate the effective potential as a function of th...
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Veröffentlicht in: | arXiv.org 2010-07 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The dynamical fermion mass generation on a 3-brane in the 5D space-time is discussed in a model with bulk fermions in interaction with fermions on the brane assuming the presence of a constant abelian gauge field component \(A_5\) in the bulk. We calculate the effective potential as a function of the fermion masses and the gauge field component \(A_5\). The masses can be found from the stationarity condition for the effective potential (the gap equation). We formulate the equation for the mass spectrum of the 4D--fermions. The phases with finite and vanishing fermion masses are studied and the dependence of the masses on the radius of the 5th dimension is analyzed. The influence of the \(A_5\)-component of the gauge field on the symmetry breaking is considered both when this field is a background parameter and a dynamical variable. The critical values of the \(A_5\) field, the coupling constant and the radius are examined. |
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ISSN: | 2331-8422 |
DOI: | 10.48550/arxiv.1007.0191 |