English

Neutrino mixing in Seesaw model

High Energy Physics - Phenomenology 2017-03-08 v2

Abstract

We study the neutrino mixing matrix (the MNS matrix) in the seesaw model. By assuming a large mass hierarchy for the heavy right-handed Majorana mass, we show that, in the diagonal Majorana base, the MNS matrix is determined by a unitary matrix, SS, which transforms the neutrino Yukawa matrix, yνy_{\nu}, into a triangular form, yy_{\triangle}. The mixing matrix of light leptons is VKMSV_{KM} S^{\prime *}, where VKMVLeVLνV_{KM} \equiv {V_{Le}}^{\dagger} V_{L \nu} %VLeV_{Le} and VLνV_{L\nu} diagonalize %the Yukawa matrices of charged leptons, %yeyey_e y_e^{\dagger}, and neutrinos, yνyνy_{\nu} y_{\nu}^{\dagger}, %respectively, and SVLνSS^{\prime *} \equiv {V_{L\nu}}^{\dagger} S^*. Large mixing may occur without fine tuning of the matrix elements of yy_{\triangle} even if the usual KM-like matrix VKMV_{KM} is given by VKM=1V_{KM} =1. This large mixing naturally may satisfy the experimental lower bound of the mixing implied by the atmospheric neutrino oscillation.

Keywords

Cite

@article{arxiv.hep-ph/9909208,
  title  = {Neutrino mixing in Seesaw model},
  author = {J. Hashida and T. Morozumi and A. Purwanto},
  journal= {arXiv preprint arXiv:hep-ph/9909208},
  year   = {2017}
}

Comments

14 pages, 4 figures, PTPTeX