English

Present and Future Bounds on Non-Standard Neutrino Interactions

High Energy Physics - Phenomenology 2010-04-06 v2

Abstract

We consider Non-Standard neutrino Interactions (NSI), described by four-fermion operators of the form (νˉαγνβ)(fˉγf)(\bar{\nu}_{\alpha} \gamma {\nu}_{\beta}) (\bar{f} \gamma f), where ff is an electron or first generation quark. We assume these operators are generated at dimension 8\geq 8, so the related vertices involving charged leptons, obtained by an SU(2) transformation νδeδ\nu_{\delta} \to e_{\delta}, do not appear at tree level. These related vertices necessarily arise at one loop, via WW exchange. We catalogue current constraints from sin2θW\sin^2 \theta_W measurements in neutrino scattering, from atmospheric neutrino observations, from LEP, and from bounds on the related charged lepton operators. We estimate future bounds from comparing KamLAND and solar neutrino data, and from measuring sin2θW\sin^2 \theta_W at the near detector of a neutrino factory. Operators constructed with νμ\nu_\mu and νe\nu_e should not confuse the determination of oscillation parameters at a ν\nufactory, because the processes we consider are more sensitive than oscillations at the far detector. For operators involving ντ\nu_\tau, we estimate similar sensitivities at the near and far detector.

Keywords

Cite

@article{arxiv.hep-ph/0302093,
  title  = {Present and Future Bounds on Non-Standard Neutrino Interactions},
  author = {S. Davidson and C. Pena-Garay and N. Rius and A. Santamaria},
  journal= {arXiv preprint arXiv:hep-ph/0302093},
  year   = {2010}
}

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