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Leptonic CP violation: zero, maximal or between the two extremes
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abstract
Discovery of the CP-violation in the lepton sector is one of the challenges of the particle physics. We search for possible principles, symmetries and phenomenological relations that can lead to particular values of the CP-violating Dirac phase, $\delta$. In this connection we discuss two extreme cases: the zero phase, $\delta = 0$, and the maximal CP-violation, $\delta = \pm \pi/2$, and relate them to the peculiar pattern of the neutrino mixing. The maximal CP-violation can be related to the $\nu_\mu - \nu_\tau$ reflection symmetry. We study various aspects of this symmetry and introduce a generalized reflection symmetry that can lead to an arbitrary phase that depends on the parameter of the symmetry transformation. The generalized reflection symmetry predicts a simple relation between the Dirac and Majorana phases. We also consider the possibility of certain relations between the CP-violating phases in the quark and lepton sectors.
Forward citations
Cited by 3 Pith papers
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Perturbative determination of CP phase in CKM matrix using rephasing invariants of hierarchical mass matrices and their inverses
The CKM CP phase is expressed as a fourth-order rephasing invariant constructed from the down-quark mass matrix and its inverse via perturbative singular value decomposition.
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A Rephasing Invariant Formula for the Dirac CP Phase and General Perturbative Expansion: Prospects for DUNE and T2HK
A closed-form rephasing-invariant expression for the Dirac CP phase and a first-order expansion show charged-lepton mixing can shift the phase by up to about 30 degrees, within the expected reach of DUNE and T2HK.
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Revisiting the two-zero texture Majorana neutrino mass matrix
Five of the seven two-zero texture Majorana neutrino mass matrices are in severe tension with cosmology and neutrinoless double beta decay bounds under a NuFit 6.0 scan, while A1 and A2 remain viable and predict small...
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