122 research outputs found
Possible Flavor Mixing Structures of Lepton Mass Matrices
To search for possible textures of lepton mass matrices, we systematically
examine flavor mixing structures which can lead to large lepton mixing angles.
We find out 37 mixing patterns are consistent with experimental data, taking
into account phase factors in the mixing matrices. Only six of the patterns can
explain the observed data without any tuning of parameters, while the others
need particular choices for the phase values. It is found that these six mixing
patterns are those predicted by the models which have been proposed to account
for fermion mass hierarchies. On the other hand, the others may give new flavor
mixing structures of lepton mass matrices and therefore new possibilities of
model construction.Comment: 21 page
Neutrino mass matrix with U(2) flavor symmetry and neutrino oscillations
The three neutrino mass matrices in the model are studied
focusing on the neutrino oscillation experiments. The atmospheric neutrino
anomaly could be explained by the large oscillation.
The long baseline experiments are expected to detect signatures of the neutrino
oscillation even if the atmospheric neutrino anomaly is not due to the neutrino
oscillation. However, the model cannot solve the solar neutrino deficit while
it could be reconciled with the LSND data.Comment: 12 pages, LaTex file, to be published in PR
Is CP Violation Observable in Long Baseline Neutrino Oscillation Experiments ?
We have studied CP violation originated by the phase of the neutrino mixing
matrix in the long baseline neutrino oscillation experiments. The direct
measurements of CP violation is the difference of the transition probabilities
between CP-conjugate channels. In those experiments, the CP violating effect is
not suppressed if the highest neutrino mass scale is taken to be 1\sim 5 \eV,
which is appropriate for the cosmological hot dark matter. Assuming the
hierarchy for the neutrino masses, the upper bounds of CP violation have been
caluculated for three cases, in which mixings are constrained by the recent
short baseline ones. The calculated upper bounds are larger than ,
which will be observable in the long baseline accelerator experiments. The
matter effect, which is not CP invariant, has been also estimated in those
experiments.Comment: 28 pages, LaTex file, 6 figures included using epsfig Matter effect
is estimated(Figs.3(a) (b)). Physical parameters are change
Deviation of Neutrino Mixing from Bi-maximal
We have studied how observables of the neutrino mixing matrix can link up
with the ones in the quark sector. The deviation from the bi-maximal flavor
mixing is parameterized using a 3 x 3 unitary matrix. The neutrino mixings are
investigated supposing this unitary matrix to be hierarchical like the quark
mixing matrix. We obtain the remarkable prediction |U_{e3}| >= 0.03 from the
experimentally allowed range tan^2 theta_{sol} = 0.24 ~ 0.89. The CP violation
in neutrino oscillations is expected to be very small.Comment: Some references are adde
Natural Neutrino Mass Matrix
Naturalness of the neutrino mass hierarchy and mixing is studied. First we
select among 12 neutrino mixing patterns a few patterns, which could form the
natural neutrino mass matrix. Further we show that if the Dirac neutrino mass
matrix is taken as the natural one in the quark sector, then only two mixing
patterns without the large mixing lead to the natural right-handed Majorana
mass matrix. The rest of the chosen patterns with three degenerate mass
solution lead to the unnatural right-handed Majorana mass matrix in the see-saw
mechanism. Notice however, that for the chosen two natural patterns there could
be a huge mass hierarchy such as in order to reproduce
the inverse mass hierarchy of the light neutrinos.Comment: 31 pages, LaTex file, no figures, arguments made more clear, main
conclusions unchanged, version accepted for publication in PRD Reort-no:
Lund-Mph-97/14 Revise
CP Violation in Bilarge Lepton Mixing
We propose a scheme of lepton mixing in which the unitary matrix that
diagonalizes the neutrino mass matrix is bimaximal and the deviation from
bimaximal of the lepton mixing matrix is due to the unitary matrix that
diagonalizes the charged-lepton mass matrix. This matrix is assumed to be
hierarchical, like the quark mixing matrix. It is shown that in general it is
possible to have a sizable value for |U_{e3}| together with an effective
two-neutrino maximal mixing in solar neutrino experiments. If the effective
mixing in solar neutrino experiments is less than maximal, as indicated by
current data, |U_{e3}| is bounded from below. Furthermore, in general the
violation of CP could be relatively large.Comment: 11 pages. Final version to be published in PR
Lepton Flavor Violating Process in Bi-maximal texture of Neutrino Mixings
We investigate the lepton flavor violation in the framework of the MSSM with
right-handed neutrinos taking the large mixing angle MSW solution in the
quasi-degenerate and the inverse-hierarchical neutrino masses. We predict the
branching ratio of and processes
assuming the degenerate right-handed Majorana neutrino masses. We find that the
branching ratio in the quasi-degenerate neutrino mass spectrum is 100 times
smaller than the ones in the inverse-hierarchical and the hierarchical neutrino
spectra. We emphasize that the magnitude of is one of important
ingredients to predict BR(). The effect of the deviation
from the complete-degenerate right-handed Majorana neutrino masses are also
estimated. Furtheremore, we examine the S_{3\sL}\times S_{3\sR} model, which
gives the quasi-degenerate neutrino masses, and the Shafi-Tavartkiladze model,
which gives the inverse-hierarchical neutrino masses. Both predicted branching
ratios of are smaller than the experimantal bound.Comment: Latex file, 38 pages, 10 figures, revised versio
Lepton Flavor Model from Delta(54) Symmetry
We present the lepton flavor model with , which appears
typically in heterotic string models on the orbifold. Our model
reproduces the tri-bimaximal mixing in the parameter region around degenerate
neutrino masses or two massless neutrinos. We predict the deviation from the
tri-bimaximal mixing by putting the experimental data of neutrino masses in the
normal hierarchy of neutrino masses. The upper bound of is
0.01. There is the strong correlation between and .
Unless is deviated from the maximal mixing considerably,
remains to be tiny.Comment: 19 pages, 7 figures; some discussions are modifie
Leptogenesis in Neutrino Textures with Two Zeros
The leptogenesis is studied in the neutrino textures with two zeros, which
reduce the number of independent phases of the CP violation. The
phenomenological favored neutrino textures with two zeros are decomposed into
the Dirac neutrino mass matrix and the right-handed Majorana one in the see-saw
mechanism. Putting the condition to suppress the decay
enough, the texture zeros of the Dirac neutrino mass matrix are fixed in the
framework of the MSSM with right-handed neutrinos. These textures have only one
CP violatig phase. The magnitude of each entry of the Dirac mass matrix is
determined in order to explain the baryon asymmetry of the universe by solving
the Boltzman equations. The relation between the leptogenesis and the low
energy CP violation is presented in these textures.Comment: Latex file with 20 pages, 6 eps figure
Explicit Violation of the Higgs Sector in the Next-to-Minimal Supersymmetric Standard Model
We study the explicit violation of the Higgs sector in the minimal
supersymmetric standard model with a gauge singlet Higgs field. The magnitude
of violation is discussed in the limiting cases of and
, where and denote VEV of singlet and doublet
Higgs scalars, respectively. Our numerical predictions of the electric dipole
moments of electron and neutron lie around the present experimental upper
limits. It is found that the large violation effect reduces the magnitude
of the lightest Higgs boson mass in the order of a few ten GeV.Comment: 20 pages, LATEX, 5 figures(not included, available on request
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