Leptoquark decays can dominate the production of heavy vectorlike tau partners at the LHC, offering new mono- and di-lepton search channels.
Probing New Physics in the Vector-like Lepton Model by Lepton Electric Dipole Moments
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abstract
We examine the lepton dipole moments in an extension of the Standard Model (SM), which contains vector-like leptons that couple only to the second-generation SM leptons. The model naturally leads to sizable contributions to the muon $g-2$ and the muon electric dipole moment (EDM). One feature of this model is that a sizable electron EDM is also induced at the two-loop level due to the existence of new vector-like leptons in the loops. We find parameter regions that can explain the muon $g-2$ anomaly and are also consistent with the experimental constraints coming from the electron EDM and the Higgs decay $h\rightarrow \mu^{+}\mu^{-}$. The generated EDMs can be as large as $O(10^{-22})~e \cdot \mathrm{cm}$ for the muon and $O(10^{-30})~e \cdot \mathrm{cm}$ for the electron, respectively, which can be probed in future experiments for the EDM measurements.
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Vectorlike $\tau$ production through leptoquarks
Leptoquark decays can dominate the production of heavy vectorlike tau partners at the LHC, offering new mono- and di-lepton search channels.