Analysis of Forward-Backward and Lepton Polarization Asymmetries in $B\to K_{1}\ell^{+}\ell^{-}$ Decays in the Two-Higgs-doublet Model
Naveed Ahmed, Ishtiaq Ahmed, M. Jamil Aslam

TL;DR
This paper investigates how two-Higgs-doublet models influence forward-backward and lepton polarization asymmetries in specific B meson decays, providing insights for experimental constraints at LHC and B factories.
Contribution
It offers a detailed analysis of asymmetries in B to K1 lepton decays within THDMs, highlighting their sensitivity to model parameters and potential for experimental testing.
Findings
THDM parameters significantly affect asymmetries
Form factors calculated using Light Cone QCD approach
Potential to constrain THDM parameters through asymmetry measurements
Abstract
The exclusive semileptonic () decays are analyzed in variants of two Higgs double models (THDMs). The mass eigenstates and are the mixture of two axial-vector SU(3) and states with the mixing angle . Making use of the form factors calculated in the Light Cone QCD approach and by taking the mixing angle , the impact of the parameters of the THDMs on different asymmetries in above mentioned semileptonic meson decays are studied. In this context the forward-backward asymmetry and different lepton polarization asymmetries have been analyzed. We have found comprehensive effects of the parameters of the THDMs on the above mentioned asymmetries. Therefore, the precise measurements of these asymmetries at the LHC and different factories, for…
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