2,086 research outputs found
Constraints from Neutrinoless Double Beta Decay
We examine the constraints from the recent HEIDELBERG-MOSCOW double beta
decay experiment. It leads us to the almost degenerate or inverse hierarchy
neutrino mass scenario. In this scenario, we obtain possible upper bounds for
the Majorana CP violating phase in the lepton sector by incorporating the data
from the neutrino oscillation, the single beta decay experiments, and from the
astrophysical observation. We also predict the neutrino mass that may be
measurable in the future beta decay experiments.Comment: 10 pages, 3 figure
Universal Texture of Quark and Lepton Mass Matrices
Against the conventional picture that the mass matrix forms in the quark
sectors will take somewhat different structures from those in the lepton
sectors, a possibility that all the mass matrices of quarks and leptons have
the same form as in the neutrinos is investigated. For the lepton sectors, the
model leads to a nearly bimaximal mixing with the prediction
|U_{e3}|^2=m_e/2m_\mu=0.0024 and \tan^2\theta_{sol} \simeq m_{\nu 1}/m_{\nu 2},
and so on. For the quark sectors, it can lead to reasonable values of the CKM
mixing matrix and masses: |V_{us}|\simeq \sqrt{m_d/m_s}, |V_{ub}| \simeq
|V_{cb}|\sqrt{m_u/m_c}, |V_{td}| \simeq |V_{cb}|\cdot |V_{us}|, and so on.Comment: 9 pages, Latex, talk given at The 4th workshop on "Neutrino
Oscillations and their Origin" (NOON2003) (Kanazawa, Japan, 10--14 Feb.
2002). To appear in the Proceeding
Large Lepton Mixing and Nonsymmetric Mass Matrices with Flavor 2 <-> 3 Symmetry
We analyze the lepton sector of a recently proposed nonsymmetric mass matrix
model. Our model gives a unified description of quark and lepton with the same
texture form based on an extended flavor symmetry with a
phase. By investigating possible types of assignment for masses, we find that
the model can lead to large lepton mixings which are consistent with
experimental values. We also find that the model predicts a very small value,
, for the lepton mixing matrix element square .
The CP violating phases in the lepton mixing matrix and a suppression of the
averaged neutrino mass in the neutrinoless double beta decay are also
predicted.Comment: 15pages, 2figure
Broken Flavor 2 <-> 3 Symmetry and phenomenological approach for universal quark and lepton mass matrices
A phenomenological approach for the universal mass matrix model with a broken
flavor 2 3 symmetry is explored by introducing the 2 3 antisymmetric
parts of mass matrices for quarks and charged leptons . We present explicit
texture components of the matrices, which are consistent with all the neutrino
oscillation experiments and quark mixing data. The mass matrices have a common
structure for quarks and leptons, while the large lepton mixings and the small
quark mixings are derived with no fine tuning due to the difference of the
phase factors. The model predicts a value, 2.4 x 10^{-3}, for the lepton mixing
matrix element square |U_{13}|^2, and also predict =(0.89-1.4) x 10^{-4}
eV for the averaged neutrino mass which appears in the neutrinoless double beta
decay.Comment: 18 page
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