TY - JOUR
T1 - Quark-lepton complementarity with renormalization effects through threshold corrections
AU - Kang, Sin Kyu
AU - Kim, C. S.
AU - Lee, Jake
N1 - Publisher Copyright:
© Copiright owned by the author(s) under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike Licence.
PY - 2005
Y1 - 2005
N2 - The recent experimental measurements of the solar neutrino mixing angle θsol and the Cabibbo mixing angle θC reveal a surprising relation, θsol + θC π 4 . While this empirical relation has been interpreted as a support of the idea of grand unification, it may be merely accidental in the sense that reproducing the relation at a low energy in the framework of grand unification may depend strongly on the renormalization effects whose size can vary with the choice of parameter space. We note that the lepton mixing matrix derived from quark-lepton unification can lead to a shift of the complementarity relation at low energy. While the renormalization group effects generally lead to additive contribution on top of the shift, we show that the threshold corrections which may exist in some intermediate scale new physics such as supersymmetric standard model can diminish it, so we can achieve the complementarity relation at a low energy.
AB - The recent experimental measurements of the solar neutrino mixing angle θsol and the Cabibbo mixing angle θC reveal a surprising relation, θsol + θC π 4 . While this empirical relation has been interpreted as a support of the idea of grand unification, it may be merely accidental in the sense that reproducing the relation at a low energy in the framework of grand unification may depend strongly on the renormalization effects whose size can vary with the choice of parameter space. We note that the lepton mixing matrix derived from quark-lepton unification can lead to a shift of the complementarity relation at low energy. While the renormalization group effects generally lead to additive contribution on top of the shift, we show that the threshold corrections which may exist in some intermediate scale new physics such as supersymmetric standard model can diminish it, so we can achieve the complementarity relation at a low energy.
UR - http://www.scopus.com/inward/record.url?scp=85056270902&partnerID=8YFLogxK
M3 - Conference article
AN - SCOPUS:85056270902
SN - 1824-8039
VL - 21
JO - Proceedings of Science
JF - Proceedings of Science
T2 - 2005 International Europhysics Conference on High Energy Physics, HEP 2005
Y2 - 21 July 2005 through 27 July 2005
ER -