Gauge invariant Barr-Zee type contributions to fermionic EDMs in the two-Higgs doublet models

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Abstract

We calculate all gauge invariant Barr-Zee type contributions to fermionic electric dipole moments (EDMs) in the two-Higgs doublet models (2HDM) with softly broken Z 2 symmetry. We start by studying the tensor structure of h → VV′ part in the Barr-Zee diagrams, and we calculate the effective couplings in a gauge invariant way by using the pinch technique. Then we calculate all Barr-Zee diagrams relevant for electron and neutron EDMs. We make bounds on the parameter space in type-I, type-II, type-X, and type-Y 2HDMs. The electron and neutron EDMs are complementary to each other in discrimination of the 2HDMs. Type-II and type-X 2HDMs are strongly constrained by recent ACME experiment's result, and future experiments of electron and neutron EDMs may search O(10) TeV physics. © 2014 The Author(s).

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Abe, T., Hisano, J., Kitahara, T., & Tobioka, K. (2014). Gauge invariant Barr-Zee type contributions to fermionic EDMs in the two-Higgs doublet models. Journal of High Energy Physics, 2014(1). https://doi.org/10.1007/JHEP01(2014)106

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