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arXiv:1511.00450·v2·High Energy Physics — Phenomenology

Leptonic Unitarity Triangles and Effective Mass Triangles of the Majorana Neutrinos

Zhi-zhong Xing🇨🇳 · Jing-yu Zhu🇨🇳

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Abstract

Given the best-fit results of six neutrino oscillation parameters, we plot the Dirac and Majorana unitarity triangles (UTs) of the 3\times 3 lepton flavor mixing matrix to show their real shapes for the first time. The connections of the Majorana UTs with neutrino-antineutrino oscillations and neutrino decays are explored, and the possibilities of right or isosceles UTs are discussed. In the neutrino mass limit of m_1 \to 0 or m_3 \to 0, which is allowed by current experimental data, we show how the six triangles formed by the effective Majorana neutrino masses \langle m\rangle_{\alpha\beta} (for \alpha, \beta = e, \mu, \tau) and their corresponding component vectors look like in the complex plane. The relations of such triangles to the Majorana phases and to the lepton-number-violating decays H^{++} \to \alpha^+ \beta^+ in the type-II seesaw mechanism are also illustrated.

Comments: 18 pages, 4 figures, more discussions added. Invited contribution to the Special Issue on Neutrino Oscillations for celebrating the Nobel Prize in Physics 2015 (Nucl. Phys. B in press)

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