<p>We present a renormalizable SO(10) grand unified theory with a <i>minimal</i> Yukawa sector consisting of a 126<sub><i>H</i></sub>, a real 10<sub><i>H</i></sub> and a real 120<sub><i>H</i></sub>, where <i>CP</i> violation has a spontaneous origin. We show that the Yukawa sector in this setup, which consists of only 19 real parameters, is capable of simultaneously reproducing the observed fermion masses and mixings, including neutrino oscillations, as well as the baryon asymmetry of the Universe via thermal leptogenesis. In this framework, <i>CP</i> is spontaneously broken when a <i>CP</i>-odd Higgs field 54<sub><i>H</i></sub>, used for GUT symmetry breaking, acquires a non-zero vacuum expectation value. The Yukawa sector of the model contains four independent phases which determine the Dirac phases <i>δ</i><sub>CKM</sub> and <i>δ</i><sub>PMNS</sub>, the neutrino Majorana phases, as well as those responsible for leptogenesis. We show that these four phases can arise from a single complex parameter in the Higgs potential involving the <i>CP</i>-odd Higgs field 54<sub><i>H</i></sub>. The proposed minimal setup predicts a <i>normal</i> ordering of neutrino masses, with the atmospheric mixing angle <i>θ</i><sub>23</sub> preferred in the first octant and the <i>δ</i><sub>PMNS</sub> lying in the range (–37°, +31°). The fermion fits in our scenario further yield a strongly hierarchical mass spectrum for the three right-handed neutrinos, (<i>M</i><sub>1</sub>, <i>M</i><sub>2</sub>, <i>M</i><sub>3</sub>) ∼ (10<sup>5</sup>, 10<sup>12</sup>, 5 · 10<sup>14</sup>) GeV, which is shown to result in successful <i>N</i><sub>2</sub><i>-dominated</i> leptogenesis, consistent with current cosmological data.</p>

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Spontaneous CP violation and leptogenesis in SO(10)

  • K. S. Babu,
  • Chee Sheng Fong,
  • Shaikh Saad

摘要

We present a renormalizable SO(10) grand unified theory with a minimal Yukawa sector consisting of a 126H, a real 10H and a real 120H, where CP violation has a spontaneous origin. We show that the Yukawa sector in this setup, which consists of only 19 real parameters, is capable of simultaneously reproducing the observed fermion masses and mixings, including neutrino oscillations, as well as the baryon asymmetry of the Universe via thermal leptogenesis. In this framework, CP is spontaneously broken when a CP-odd Higgs field 54H, used for GUT symmetry breaking, acquires a non-zero vacuum expectation value. The Yukawa sector of the model contains four independent phases which determine the Dirac phases δCKM and δPMNS, the neutrino Majorana phases, as well as those responsible for leptogenesis. We show that these four phases can arise from a single complex parameter in the Higgs potential involving the CP-odd Higgs field 54H. The proposed minimal setup predicts a normal ordering of neutrino masses, with the atmospheric mixing angle θ23 preferred in the first octant and the δPMNS lying in the range (–37°, +31°). The fermion fits in our scenario further yield a strongly hierarchical mass spectrum for the three right-handed neutrinos, (M1, M2, M3) ∼ (105, 1012, 5 · 1014) GeV, which is shown to result in successful N2-dominated leptogenesis, consistent with current cosmological data.