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Probing millicharged particles with NA64 experiment at CERN

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arxiv 1810.06856 v2 pith:OVW5Y3T6 submitted 2018-10-16 hep-ph

Probing millicharged particles with NA64 experiment at CERN

classification hep-ph
keywords particlescernexperimentmillichargedmissingna64allowsbeams
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In this note we estimate the sensitivity of the NA64 experiment to millicharged particles ($\chi$). That experimental facility is dedicated to the searching for dark sector particles in missing energy events at the CERN SPS. We consider missing momentum signatures in the $\simeq$ 100 GeV electron and muon beams and show that the later one allows to obtain more stringent bounds on the millicharge $Q_{\chi}$, which for the $\chi$ masses $100$~MeV $\leq m_{\chi} \leq 500$~MeV at the level $ Q_{\chi}/e\lesssim O(10^{-3}) - O(10^{-2})$.

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Cited by 4 Pith papers

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    NA64mu data yield first 90% CL bounds on two SMEFT and three nuSMEFT four-lepton operators involving muons, with future projections to Lambda ~ 100 GeV.

  3. Spin Identification of Dark Sector Mediators through Angular Distributions

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    An angular distribution observable from decay products distinguishes vector versus scalar spin for dark sector mediators in meson decays, enabling spin identification at DUNE, SHiP and FASER2 in unconstrained parameter space.

  4. Muon Beam Dump Experiments explicate five-dimensional nature of $U(1)_{L_{\mu}-L_{\tau}}$

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    Muon beam dump experiments can probe five-dimensional U(1)_{Lμ-Lτ} models via enhanced Kaluza-Klein signals, with decay channels enabling mass reconstruction to indicate extra dimensions.