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Chuan-Hung Chen

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Implications of LFV in tau decays ... CP violations: time-dependence CP asymmetry & direct CP violation ... 1/MR which is around GUTs scale 1015 GeV. ... – PowerPoint PPT presentation

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Title: Chuan-Hung Chen


1
Lepton flavor violation in Tau decays
Chuan-Hung Chen
Department of Physics, National Cheng-Kung
U., Tainan, Taiwan
seminar_at_cycu.11.21.06.tw
  • Introduction Motivation
  • Higgs-mediated LFV
  • Implications of LFV in tau decays
  • Speculation of Higgs-mediated effects

2
Introduction Motivation
What we can learn from B factories
  • CP violations time-dependence CP asymmetry
    direct CP violation

ICHEP2006 ?1 with b ? s Penguins
3
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4
  • Test QCD theories PQCD, QCDF, final state
    interactions etc.
  • Determine the parameters of CKM matrix elements,
    or fB

5
  • Probe flavor structures

6
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7
Future tau (?) physics
8
  • results up to 2005

9
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10
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11
Lepton flavor violation (LFV)
  • quark flavor changing via charged current
    charged weak current is written as

In terms of physical eigenstates
By Wolfenstein parametrization
12
  • In the standard model (SM), the flavor changing
    neutral currents (FCNCs)
  • arise from loop
  • Rear decays induced from loop will be sensitive
    to new physics.
  • In the SM, since neutrinos are massless, there
    are no flavor violations in
  • lepton sector
  • According to observed neutrino oscillations, we
    know that
  • neutrinos have masses so that

Maki-Nakagawa-Suzuki-Pontecorvo (MNSP)
13
Higgs-mediated LFV
  • Nonzero neutrino masses are definite.
  • It is found that seesaw mechanism, by
    introducing singlet right-handed
  • Majorana neutrinos, is one of natural ways
    to solve the tiny neutrino
  • masses which are less than a few eV.
  • In non-SUSY models, the effects of LFV are
    suppressed by
  • 1/MR which is around GUTs scale 1015 GeV.
  • However, in models with SUSY, due to the
    right-handed Majorana
  • introduced, the flavor conservation in the
    slepton sector at unified
  • scale will be violated at the MR scale via
    renormalization.

Borzumati, Masiero, PRL57,961 Hall, Rattazzi,
Sarid, PRD50,7048Babu, Kolda, PRL89,241802
14
Babu Koldas mechanism for lepton flavor
violation
nonholomophic terms
15
  • At large tan? mt/mb, or cos? ltlt 1, the
    Higgs-mediated LFV will be
  • enhanced

16
Implications of LFV in ? decays
  • ?? ? (?, 3?, ?, KK) induced by slepton mixings
    with large tan?

Due to slepton mixings
17
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18
  • LFV with Higgs-mediated

nonholomophic terms
Y diagonalized Yukawa matrix of leptons
  • Since ?2 are loop effects, they are much less
    than 1,
  • the LFV can be regarded as a leading
    expansion of ?2Iij

19
  • Employ the physical mass eigenstates of the
    Higgses
  • The interactions for the LFV via the
    Higgs-mediated mechanism
  • are expressed by

20
  • ?? ? ?
  • MU 1019 GeV , MR 1014 GeV
  • tan?60
  • BRlt (3.1, 0.68) ? 10?7

21
  • ?39.30
  • fs0.17 GeV
  • mss0.69 GeV

22
  • decoupling limit ?? ???/2

23
  • cs cos(?-?)sin ? scsin(?-?)cos?
  • decoupling limit ?? ???/2

24
Cheng,Chua, Soni, PRD72,094003
25
Speculation of Higgs-mediated effects
  • In terms of squark mixings,

Babu,Kolda, PRL84,228(00)
26
  • It is interesting to examine the effects on B
    decays
  • Charged Higgs on B???
  • Higgs-mediated on
  • Higgs-mediated on
  • Higgs-mediated on
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