Abelian extension of standard model with four generations
DSpace at IIT Bombay
View Archive InfoField | Value | |
Title |
Abelian extension of standard model with four generations
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Creator |
BORAH, D
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Subject |
HIGGS DOUBLET MODEL
LEFT-RIGHT SYMMETRY COSMIC ABUNDANCES UNITARITY NEUTRINO OSCILLATIONS VIOLATION PARITY MASSES BOUNDS |
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Description |
An Abelian gauge extension of the standard model is proposed with a fourth generation. The fourth-generation fermions obtain their masses from a heavier Higgs doublet which makes no tree-level contributions to the first three generations' masses. Light first-three-generations' neutrino masses continue to have a type-I seesaw explanation, whereas the fourth-generation neutrino turns out to be a heavy Dirac neutrino. In the minimal version of such a model with no off-diagonal Yukawa couplings between the fourth and the first three generations, such a heavy Dirac neutrino can be long-lived on cosmological time scales. In this model, the stated LHC exclusion range 120 GeV < m(H) < 600 GeV on the lighter Higgs placed in the context of a generic fourth-generation standard model is evaded. Also, the Dirac fourth-generation neutrino in this model, if stable, would constitute up to 1% of the cold dark matter in the Universe.
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Publisher |
AMER PHYSICAL SOC
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Date |
2014-10-17T04:27:26Z
2014-10-17T04:27:26Z 2012 |
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Type |
Article
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Identifier |
PHYSICAL REVIEW D, 85(1)
http://dx.doi.org/10.1103/PhysRevD.85.015006 http://dspace.library.iitb.ac.in/jspui/handle/100/15947 |
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Language |
en
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