arXiv:0808.0788·v1·High Energy Physics — Phenomenology
A complex-angle rotation and geometric complementarity in fermion mixing
Kee-Hwan Nam🇰🇷 · Kim Siyeon🇰🇷 · Seungsu Hwang🇰🇷
Abstract
The mixing among flavors in quarks or leptons in terms of a single rotation angle is defined such that three flavor eigenvectors are transformed into three mass eigenvectors by a single rotation about a common axis. We propose that a geometric complementarity condition exists between the complex angle of quarks and that of leptons in space. The complementarity constraint has its rise in quark-lepton unification and is reduced to the correlation among and the CP phase . The CP phase turns out to have a non-trivial dependence on all the other angles. We will show that further precise measurements in real angles can narrow down the allowed region of . In comparison with other complementarity schemes, this geometric one can avoid the problem of the exception and can naturally keep the lepton basis being independent of quark basis.
Comments: 9 pages, 4 figures, APPC 10 Pohang