Abstract

In this paper, we derive in a novel approach the possible textures of neutrino mass matrix that can lead to maximal atmospherical mixing angle ($\theta^{}_{23} = \pi/4$) and Dirac CP phase ($\delta = - \pi/2$) in two phenomenologically appealing scenarios: (1) one neutrino mass matrix element being vanishing (2) one neutrino mass being vanishing. For the obtained textures, some neutrino mass sum rules which relate the neutrino masses and mixing parameters will emerge. With the help of these sum rules, the unknown absolute neutrino mass scale and Majorana CP phases can be determined. Some discussions about the possible textures of neutrino mass matrix that can lead to $\theta^{}_{23} = \pi/4$, $\delta = - \pi/2$ and maximal Majorana CP phases ($\rho, \sigma = \pi/4$ or $3\pi/4$) as well as the model realization and breakings of the obtained textures are also given.

Highlights

  • Thanks to the various neutrino oscillation experiments, it has been established that neutrinos have small but nonvanishing masses and mix among different flavors [1]

  • In this work we attempt to derive the possible textures of neutrino mass matrix that can lead to θ23 1⁄4 π=4 and δ 1⁄4 −π=2 in two phenomenologically appealing scenarios: (1) one neutrino mass matrix element vanishing and

  • Some discussions about the possible textures of neutrino mass matrix that can lead to θ23 1⁄4 π=4, δ 1⁄4 −π=2 and maximal Majorana CP phases (i.e., ρ, σ 1⁄4 π=4 or 3π=4) as well as the model realization and breakings of the obtained textures are given in Sec

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Summary

INTRODUCTION

Thanks to the various neutrino oscillation experiments, it has been established that neutrinos have small but nonvanishing masses and mix among different flavors [1]. The vanishing of a neutrino mass matrix element (e.g., Mee) would render the associated LNV process (e.g., the neutrinoless double beta decay) impotent If any of these interesting consequences turns out to be favored by the future measurements, the corresponding specific neutrino mass matrix texture will stand out and shed some light on the underlying flavor theory. It is interesting to note that the current neutrino oscillation data are consistent with maximal atmospherical mixing angle (θ23 1⁄4 π=4) and Dirac CP phase (δ 1⁄4 −π=22) As mentioned above, these remarkable values may point towards some special texture of Mν.

THE APPROACH AND BASIS RESULTS
ONE NEUTRINO MASS MATRIX ELEMENT VANISHING
ONE NEUTRINO MASS VANISHING
DISCUSSIONS
Model realization
Breakings
SUMMARY
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