English

Neutrino mass, proton decay and dark matter in TeV scale universal extra dimension models

High Energy Physics - Phenomenology 2009-11-07 v2

Abstract

We show how the problem of small neutrino masses and suppressed proton decay can be simultaneously resolved in 6-D universal extra dimension models (UED) with a low fundamental scale using extended gauge groups that contain the local BLB-L symmetry. The extra space dimensions are compactified either on a T2/Z2T^2/Z_2 or T2/Z2×Z2T^2/Z_2\times Z'_2 orbifold depending on whether the full gauge group is SU(2)L×U(1)I3R×U(1)BLSU(2)_L\times U(1)_{I_{3R}}\times U(1)_{B-L} or SU(2)L×SU(2)R×U(1)BLSU(2)_L\times SU(2)_{R}\times U(1)_{B-L}. In both cases, neutrino masses are suppressed by an appropriate orbifold parity assignment for the standard model singlet neutrinos and the proton decay rate is suppressed due to a residual discrete symmetry left over from compactification. For lower values of the fundamental scale, a dominant decay mode of the neutron is n3νn\to 3 \nu. An interesting consequence of the model is a possible two component picture for dark matter of the universe.

Keywords

Cite

@article{arxiv.hep-ph/0212254,
  title  = {Neutrino mass, proton decay and dark matter in TeV scale universal extra dimension models},
  author = {R. N. Mohapatra and A. Perez-Lorenzana},
  journal= {arXiv preprint arXiv:hep-ph/0212254},
  year   = {2009}
}

Comments

25 pages, two minor typos corrected