Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5494237 | Nuclear Physics B | 2017 | 16 Pages |
Abstract
We study the excesses of muon gâ2 and R(D(â)) in the framework of a two-Higgs-doublet model with top quark flavor-changing neutral-current (FCNC) couplings. Considering the relevant theoretical and experimental constraints, we find that the muon gâ2 and R(D(â)) excesses can be simultaneously explained in a parameter space allowed by the constraints. In such a parameter space the pseudoscalar (A) has a mass between 20 GeV and 150 GeV so that it can be produced from the top quark FCNC decay tâAc. Focusing on its dominant decay AâÏϯ, we perform a detailed simulation on ppâtt¯âWbAcâjjbcÏϯ and find that the 2Ï upper limits from a data set of 30 (100)fbâ1 at the 13 TeV LHC can mostly (entirely) exclude such a parameter space.
Related Topics
Physical Sciences and Engineering
Mathematics
Mathematical Physics
Authors
Lei Wang, Jin Min Yang, Yang Zhang,