Fang-Min Cai, Rui-Lin Fan, Xin-Qiang Li, Ya-Dong Yang
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引用次数: 0
Abstract
We study the CP asymmetries of the rare top-quark decays \(t \rightarrow c \gamma \) and \(t \rightarrow cg\) in the aligned two-Higgs-doublet model (A2HDM), which is generically characterized by new sources of CP violation beyond the Standard Model (SM). Specifically, the branching ratios and CP asymmetries of these rare top-quark decays are explicitly formulated, with an emphasis on the origins of weak and strong phases in the A2HDM. Taking into account the most relevant constraints on this model, we evaluate the variations of these observables with respect to the model parameters. It is found that the branching ratios of \(t \rightarrow c \gamma \) and \(t \rightarrow cg\) decays can maximally reach up to \(1.47\times 10^{-10}\) and \(4.86\times 10^{-9}\) respectively, which are about four and three orders of magnitude higher than the corresponding SM predictions. While the branching ratios are almost independent of the relative phase \(\varphi \) between the two alignment parameters \(\varsigma _u\) and \(\varsigma _d\) within the allowed parameter space, the CP asymmetries are found to be very sensitive to \(\varphi .\) When the two alignment parameters are complex with a non-zero \(\varphi \) varied within the range \([50^\circ ,150^\circ ],\) the magnitudes of the CP asymmetries can be significantly enhanced relative to both the SM and the real case. In particular, the maximum absolute values of the CP asymmetries can even reach up to \({\mathcal {O}}(1)\) for these two decay modes, in the range \(\varphi \in [70^\circ ,100^\circ ].\) These interesting observations could be utilized to discriminate the SM and the different scenarios of the A2HDM.
期刊介绍:
Experimental Physics I: Accelerator Based High-Energy Physics
Hadron and lepton collider physics
Lepton-nucleon scattering
High-energy nuclear reactions
Standard model precision tests
Search for new physics beyond the standard model
Heavy flavour physics
Neutrino properties
Particle detector developments
Computational methods and analysis tools
Experimental Physics II: Astroparticle Physics
Dark matter searches
High-energy cosmic rays
Double beta decay
Long baseline neutrino experiments
Neutrino astronomy
Axions and other weakly interacting light particles
Gravitational waves and observational cosmology
Particle detector developments
Computational methods and analysis tools
Theoretical Physics I: Phenomenology of the Standard Model and Beyond
Electroweak interactions
Quantum chromo dynamics
Heavy quark physics and quark flavour mixing
Neutrino physics
Phenomenology of astro- and cosmoparticle physics
Meson spectroscopy and non-perturbative QCD
Low-energy effective field theories
Lattice field theory
High temperature QCD and heavy ion physics
Phenomenology of supersymmetric extensions of the SM
Phenomenology of non-supersymmetric extensions of the SM
Model building and alternative models of electroweak symmetry breaking
Flavour physics beyond the SM
Computational algorithms and tools...etc.