Analysis of in the 2HDM Type-I at the LHC
arXiv:2107.01451 · doi:10.1007/JHEP12(2021)021
Abstract
We analyse a light charged Higgs boson in the 2-Higgs Doublet Model (2HDM) Type-I, when its mass satisfies the condition and the parameter space is consistent with theoretical requirements of self-consistency as well as the latest experimental constraints from Large Hadron Collider (LHC) and other data. Over such a parameter space, wherein the Standard Model (SM)-like state discovered at the LHC in 2012 is the heaviest CP-even state of the 2HDM, it is found that the decay modes of the charged Higgs boson are dominated by . Furthermore, the light neutral Higgs boson dominantly decays into two photons. Under these conditions, we find that the production and decay process () is essentially background free. However, since the could be largely off-shell and the state is very light, so that both the lepton coming from the former and the photons coming from the latter could be rather soft, we perform here a full Monte Carlo (MC) analysis at the detector level demonstrating that such a signal is very promising, as it would be yielding significant excesses at the LHC with an integrated luminosity of 300 at both and .
21 pages, 18 figures
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- Discovery prospects of a light charged Higgs near the fermiophobic region of Type-I 2HDM
- Probing Type-I 2HDM light Higgs in the top-pair-associated diphoton channel
- Charged Higgs induced 5 and 6 lepton signatures from heavy neutrinos at the LHC