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N. Srimanobhas

Publications and source records attributed to N. Srimanobhas.

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Searching for Lepton Flavor Violating decays of the Higgs Boson into $μτ$, $eτ$, and $eμ$ final states at FCC-ee

We investigate the projected sensitivity of the FCC-ee in probing the LFV decay of the 125 GeV Higgs boson, $h\toμτ$, $h\to eτ$, and $h \to eμ$ at center-of-mass energy of 240 GeV with an integrated luminosity of 5 ab$^{-1}$. With the clean multi-lepton final states, we consider the Higgs production modes that contribute to $e^+e^- \to \ell\ell h$, in particular, the Higgs-strahlung and the vector boson fusion production channels. The 95\% CL upper limits on branching ratio are found to be $5.92 \times 10^{-4}$, $6.27 \times 10^{-4}$, and $7.48 \times 10^{-5}$ for the channels $h\toμτ$, $h\to eτ$, and $h \to eμ$, respectively. In addition, we also consider the LFV decay of a new CP-even Higgs boson with mass in the range of $110-200$ GeV. The projected FCC-ee sensitivities are then compared to those from low energy searches for $\ell\to\ell'γ$ decay. We find that the FCC-ee sensitivity for the LFV decays of the Higgs in the $e-τ$ and $μ-τ$ channels is superior to the low-energy constraints. However, in the $e-μ$ case, the low energy search offers stronger constraints.

hep-ph

A New Higgs Boson with Electron-Muon Flavor-Violating Couplings

Recently, the CMS Collaboration performed a search on a new resonance decaying to $e^\pmμ^\mp$ in the mass range of 110 GeV to 160 GeV. The search also hints a possible excess at 146 GeV with a $3.8σ~(2.8σ)$ of local (global) significance. Motivated by that, we try to interpret the results in the context of the type-III two-Higgs-doublet-model. We find that the excess is only moderately constrained by low-energy lepton-flavor-violation processes, in particular the $μ\to e γ$ decay. We also compare the CMS bounds across the entire search region against constraints of $μ\to eγ$ and $μ\to e$ conversion in nuclei. Our finding indicates that the collider bounds can be superior to those of low-energy processes for the scalar mass between $110 \text{ GeV}$ and $150 \text{ GeV}$, suggesting the importance of this mass range for future searches.

hep-ph