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Seesaw mechanism in the sneutrino sector and its consequences

Athanasios Dedes1,4, Howard E. Haber2 and Janusz Rosiek1,3

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[1]

Computation of neutrino masses in R-parity violating supersymmetry: SOFTSUSY3.2

B.C. Allanach et al  Computer Physics Communications 2011 
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Sneutrino-antisneutrino oscillation at the Tevatron

Dilip Ghosh et al  Physical Review D 2011  84 075001
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Higgs boson masses in the MSSM with heavy Majorana neutrinos

S. Heinemeyer et al  Journal of High Energy Physics 2011  2011 63
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Ultrarelativistic sneutrinos at the LHC and sneutrino-antisneutrino oscillations

Dilip Ghosh et al  Physical Review D 2010  82 115006
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Beyond the standard seesaw: neutrino masses from Kähler operators and broken supersymmetry

Andrea Brignole et al  Journal of High Energy Physics 2010  2010 133
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One-loop contribution to the neutrino mass matrix in the next-to-minimal supersymmetric standard model with right-handed neutrinos and tribimaximal mixing

Debottam Das and Sourov Roy  Physical Review D 2010  82 035002
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[7]

Radiative contribution to neutrino masses and mixing in μνSSM

Pradipta Ghosh et al  Journal of High Energy Physics 2010  2010 87
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[8]

Minimal supersymmetric inverse seesaw: neutrino masses, lepton flavour violation and LHC phenomenology

M. Hirsch et al  Journal of High Energy Physics 2010  2010 103
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[9]

Including R-parity violation in the numerical computation of the spectrum of the minimal supersymmetric standard model: SOFTSUSY3.0

B.C. Allanach and M.A. Bernhard  Computer Physics Communications 2010  181 232
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[10]

SUSY_FLAVOR: A computational tool for FCNC and CP-violating processes in the MSSM

J. Rosiek et al  Computer Physics Communications 2010  181 2180
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LHC phenomenology of supersymmetric models beyond the MSSM

Werner Porod  Journal of Physics: Conference Series 2010  259 012002
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Enhanced tau lepton signatures at LHC in the constrained supersymmetric seesaw model

Kenji Kadota and Jing Shao  Physical Review D 2009  80 115004
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[13]

Heavy right-handed neutrinos and dark matter in the νCMSSM

Kenji Kadota and Keith A. Olive  Physical Review D 2009  80 095015
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[14]

Sneutrino NLSP in the νCMSSM

Kenji Kadota et al  Physical Review D 2009  79 055018
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[15]

Correlations between sneutrino oscillations and signatures at the LHC in anomaly-mediated supersymmetry breaking

Dilip Kumar Ghosh et al  Physical Review D 2009  79 055005
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Is ``just-so'' Higgs splitting needed for tb−τ Yukawa unified SUSY GUTs?

Howard Baer et al  Journal of High Energy Physics 2009  2009 005
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Low-energy effective theory, unitarity, and nondecoupling behavior in a model with heavy Higgs-triplet fields

Neil D. Christensen et al  Physical Review D 2008  77 035001
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[18]

Lepton number violating mSUGRA and neutrino masses

B.C. Allanach and C.H. Kom  Journal of High Energy Physics 2008  2008 081
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  1. Seesaw mechanism in the sneutrino sector and its consequences

    Athanasios Dedes et al JHEP11(2007)059

  2. A systematic method for the correction of astigmatism in the Siemens Elmiskop I

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  3. Transformation media based super focusing antenna

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  4. Cross-correlation analysis for temperature measurement

    V Hohreiter et al 2002 Meas. Sci. Technol. 13 1072

  5. UV-visible emission as a probe of core excitations applied to the furan and carbon dioxide molecules

    A Kivimäki et al 2009 J. Phys.: Conf. Ser. 190 012051

  6. Wetting and dewetting of extracellular matrix and glycocalix models

    Motomu Tanaka et al 2005 J. Phys.: Condens. Matter 17 S649

  7. Dendritic flux patterns in MgB2 films

    T H Johansen et al 2001 Supercond. Sci. Technol. 14 726

  8. The self-quenching process and half de-excitation time of metastables in a nitrogen afterglow

    D A Bosan et al 1994 J. Phys. D: Appl. Phys. 27 286

  9. Spatially resolved XRF, XAFS, XRD, STXM and IR investigation of a natural U-rich clay

    M A Denecke et al 2009 J. Phys.: Conf. Ser. 190 012187

  10. Pressure dependence of magnetic states in Laves Phase RCo2 (R = Dy, Ho, and Er) compounds probed by XMCD

    S Watanabe et al 2009 J. Phys.: Conf. Ser. 190 012021

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