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Chromomagnetic and chromoelectric dipole moments of the top quark in the 4GTHDM

Published 2 May 2018 in hep-ph | (1805.00615v2)

Abstract: The chromo magnetic dipole moment (CMDM) and chromo electric dipole moment (CEDM) of the top quark are calculated at the one-loop level in the framework of the two-Higgs doublet model with four fermion generations (4GTHDM), which is still consistent with experimental data and apart from new scalar bosons (H<sup>0H<sup>0, A<sup>0A<sup>0, and H<sup>±H<sup>\pm) and quarks ($b&#39;$ and $t&#39;$) predicts new sources of CPCP violation via the extended 4×44\times 4 CKM matrix. Analytical expressions for the CMDM and CEDM of a quark are presented both in terms of Feynman parameter integrals and Passarino-Veltman scalar functions, with the main contributions arising from loops carrying the scalar bosons accompanied by the third- and fourth-generation quarks. The current bounds on the parameter space of the 4GTHDM are discussed and a region still consistent with the LHC data on the 125 GeV Higgs boson is identified. It is found that the top quark CMDM, which is induced by all the scalar bosons, can reach values of the order of 10<sup>−410<sup>{-4}-10<sup>−310<sup>{-3}, with the dominant contributions arising from the fourth generation quarks, though may also be large cancellations for some parameter values, thereby giving a negligible CMDM. As for the top quark CEDM, it only receives contributions from the charged scalar boson and can reach values of the order of 10<sup>−1910<sup>{-19}-10<sup>−1810<sup>{-18} ecm for relatively light mH<sup>±m_{H<sup>\pm} and large $m_{b&#39;}$, with the dominant contribution arising from the $b&#39;$ quark. The latter would be the most interesting prediction of this model as can be larger than the value predicted by the usual THDMs by one or two orders of magnitude.

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