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On the search for muonic photons in neutrino experiments
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On the search for muonic photons in neutrino experiments
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Conserved muonic number may turn out to be a conserved muonic charge, coupled to muonic photons, gamma_mu. Muons and muonic neutrinos would emit gamma_mu's, which might be discovered by analysing the data from the past and future high energy neutrino experiments (like CHARM II, CCFR, CHORUS, NOMAD, etc.). There are two sources of gamma_mu's in these experiments: 1) internal bremsstrahlung in pion and kaon decays into mu and nu_mu, which provide neutrino beams; 2) external bremsstrahlung of muons in the shielding of the neutrino beam. In both cases the gamma_mu's would pass freely through the shielding and produce narrow muonic pairs in the neutrino detectors. These pairs could be distinguished from the trident events nu_mu + Z -> nu_mu + mu^+ + mu^- + Z by their kinematical properties: small p_t of the muon pair, small invariant mass, etc. All the above processes are quantitatively analysed in this paper.
Forward citations
Cited by 3 Pith papers
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Phenomenology of Leptophilic Gauge Interactions at Future $e^+e^-$ Colliders
Forward-backward asymmetry and a new interference-normalized observable I_FB can probe off-shell leptophilic Z_ℓ bosons at future e+e- colliders, with complementary reach from circular and linear machines.
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Phenomenology of Leptophilic Gauge Interactions at Future $e^+e^-$ Colliders
Interference-driven forward-backward asymmetry at FCC-ee, CEPC, ILC, and CLIC can probe leptophilic Z_ℓ beyond LEP contact bounds, with circular and linear machines covering complementary (M,g) regions.
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Searching for the Leptophilic Gauge Boson Z$_{l}$ at Future $e^{+}e^{-}$ Colliders
A parton-level projection shows FCC-ee and CEPC can discover a leptophilic Z' down to g_l about 10^-4, while ILC and CLIC extend the search to TeV-scale masses.
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