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arXiv:1702.02353·v3·High Energy Physics — Phenomenology

Constraints on Non-Standard Intermediate Boson Exchange Models from Neutrino-Electron Scattering

B. Sevda🇹🇷 · A. Şen🇹🇷 · M. Demirci🇹🇷 · M. Deniz🇹🇷 · M. Agartioglu🇹🇷 · A. Ajjaq🇹🇷 · S. Kerman🇹🇷 · L. Singh🇮🇳 · A. Sonay🇹🇷 · H.T. Wong🇹🇼 · M. Zeyrek🇹🇷

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Abstract

Constraints on couplings of several Beyond Standard Model Physics scenarios, mediated by massive intermediate particles including (1) Extra Z-prime, (2) New Light Spin-1 Boson, and (3) Charged Higgs Boson, are placed via neutrino-electron scattering channel to test Standard Model at low energy-momentum transfer regime. Data on and scattering from the TEXONO and LSND Experiments, respectively, are used. Upper bounds to coupling constants of Flavor Conserving and Flavor Violating New Light Spin-1 Boson and Charged Higgs Boson with respect to different mediator masses are determined. The relevant parameter spaces are extended by allowing light mediators. New lower mass limits for extra Z-prime gauge boson models are also placed.

Comments: 14 pages, 29 figures

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