arXiv:2501.07341·v1·High Energy Physics — Phenomenology
Phenomenological anatomy of top-quark FCNCs induced by a light scalar singlet
Biao-Feng Hou🇨🇳 · Xin-Qiang Li🇨🇳 · Ya-Dong Yang🇨🇳 · Xing-Bo Yuan🇨🇳 · Ming-Wang Zhang🇨🇳
Abstract
Scalar singlets under the Standard Model gauge group appear naturally in many well-motivated New Physics scenarios, such as the composite Higgs models. Unlike the Higgs boson in the Standard Model, they can induce large flavour-changing neutral currents (FCNCs) in the top sector. We investigate systematically the effects of a light scalar singlet with top-quark FCNC couplings, by including the low-energy constraints from the decay, the muon anomalous magnetic moment and the neutron Electric Dipole Moment (EDM). We also perform a detailed Monte-Carlo simulation of the channel with and , and investigate the LHC sensitivity to the couplings. It is found that the scalar singlet can induce scalar-type contributions to the decay, which do not suffer from the helicity suppression and contain a large CKM factor . As a result, constraints on the couplings from the measured branching ratio are quite stringent, being even stronger than the expected LHC sensitivity in some parameter spaces. Besides the CP-conserving couplings, we have also considered the case of CP-violating couplings, with . It is found that the CP observables and of the decay are sensitive to the phase , while the neutron EDM can provide bounds on the phase difference . Therefore, they are complementary to each other in probing the CP phases of the couplings.
Comments: 44 pages, 20 figures, comments welcome;