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Phase effect of a general two-Higgs-doublet model in b→sγ
Journal article   Open access

Phase effect of a general two-Higgs-doublet model in b→sγ

David Bowser-Chao, Kingman Cheung and Wai-Yee Keung
Physical Review D - Particles, Fields, Gravitation and Cosmology, Vol.59(11)
06/1999

Abstract

Mathematical Physics Physics and Astronomy (all) Nuclear and High Energy Physics
In a general two-Higgs-doublet model (2HDM), without the ad hoc discrete symmetries to prevent tree-level flavor-changing-neutral currents, an extra phase angle in the charged-Higgs-fermion coupling is allowed. We show that the charged-Higgs amplitude interferes destructively or constructively with the standard model amplitude for b→sγ depending crucially on this phase angle. The popular models I and II are special cases of our analysis. As a result of this phase angle the severe constraint on the charged-Higgs-boson mass imposed by the inclusive rate of b→sγ from CLEO can be relaxed. We also examine the effects of this phase angle on the neutron electric dipole moment. Furthermore, we also discuss other constraints on the charged-Higgs-fermion couplings coming from measurements of B 0 -B̄ 0 mixing, ρ 0 , and R b . ©1999 The American Physical Society.
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