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arXiv:0712.4218·v1·High Energy Physics — Phenomenology

General CP Violation in Minimal Left-Right Symmetric Model and Constraints on the Right-Handed Scale

Yue Zhang (1 and 2)🇨🇳 · Haipeng An (2)🇺🇸 · Xiangdong Ji (2 and 1)🇺🇸 · Rabindra N. Mohapatra (2) ((1)Center for High-Energy Physics and Institute of Theoretical Physics, Peking University, Beijing, China, (2)Maryland Center for Fundamental Physics, Department of Physics, University of Maryland, College Park, Maryland, USA)🇺🇸

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Abstract

In minimal left-right symmetric theories, the requirement of parity invariance allows only one complex phase in the Higgs potential and one in the Yukawa couplings, leading to a two-phase theory with both spontaneous and explicit CP violations. We present a systematic way to solve the right-handed quark mixing matrix analytically in this model and find that the leading order solution has the same hierarchical structure as the left-handed CKM matrix with one more CP-violating phase coming from the complex Higgs vev. Armed with this explicit right-handed mixing matrix, we explore its implications for flavor changing and conserving processes in detail, low-energy CP-violating observables in particular. We report an improved lower bound on the mass of 2.5 TeV from and , and a somewhat higher bound (4 TeV) from kaon decay parameters , , and neutron electric dipole moment. The new bound on the flavor-changing neutral Higgs mass is 25 TeV.

Comments: 35 pages, 14 figures

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