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Murhaf Alsayed Ali

Publications and source records attributed to Murhaf Alsayed Ali.

2 recordsLinked to original sources

Phenomenological Study of Lepton Flavor Violation in Z Boson Decays with Constrained MSSM Extended by Type-II Seesaw Model

In this work, we study the lepton flavor violation (LFV) of Z boson decays in the framework of the constrained minimal supersymmetric standard model (CMSSM) extended by the type-II seesaw model. The branching ratios of $Z\longrightarrow l_i l_j$ decays are calculated in this model. Here, $l_i$ and $l_j$ are different flavor charged leptons. After fitting to the experimental mass limits of the neutrino and supersymmetric particles, we have found that the branching ratios for LFV decays of Z boson are in the order of $6 \times {10}^{-10}$ for $e μ$ channel and of $1 \times {10}^{-9}$ for both $τμ$ and $τe$ decay channels. Considering recent experimental constraints on $l_{i}\rightarrow l_{j} γ$ decays, the branching ratios for LFV decays of Z boson get an additional suppression of $10^{-8}$ for $e μ$ channel and of $10^{-3}$ for both $τμ$ and $τe$ decay channels. The branching ratios theoretical predictions are several orders below the recent experimental limits for both scenarios, which give a very low probability to observe the LFV decays of Z boson in the future experiments.

hep-ph

Lepton Flavor Violation of Z Gauge Boson Decays in Supersymmetric Type-III Seesaw Model

In this study, we investigate the lepton flavor violation (LFV) of Z gauge boson decaying into two different flavor charged leptons $Z\rightarrow l_i l_j$ ($Z\rightarrow τμ$, $Z\rightarrow τe$ and $Z\rightarrow μe$). This work is performed in the framework of the constrained minimal supersymmetric standard model (CMSSM) which is extended by the type-III seesaw mechanism. By considering constraints from the current experimental bounds on neutrino and supersymmetric particle masses, we calculate the branching ratios of the LFV of $Z$ boson decays. The numerical results are found to be $1.30 \times {10}^{-9}$ for both the $τμ$ and $τe$ decay channels and $6.40 \times {10}^{-10}$ for the $μe$ channel. After applying the constraints from the experimental bounds on the radiative two body decays $l_{i}\rightarrow l_{j} γ$, the branching ratios of the LFV of $Z$ boson decays get an additional suppression of $10^{-3}$ for the $τμ$ and $τe$ decay channels and $10^{-8}$ for the $μe$ channel. Our prediction of the branching ratios is several orders of magnitude below the current experimental bounds.

hep-ph