English

Beyond Standard Model Searches in the MiniBooNE Experiment

High Energy Physics - Experiment 2014-05-01 v1 High Energy Physics - Phenomenology

Abstract

The MiniBooNE Experiment has contributed substantially to beyond standard model searches in the neutrino sector. The experiment was originally designed to test the Δm2\Delta m^2~1 eV2^2 region of the sterile neutrino hypothesis by observing νe\nu_e (νˉe\bar\nu_e) charged current quasi-elastic signals from a νμ\nu_\mu (νˉμ\bar\nu_\mu) beam. MiniBooNE observed excesses of νe\nu_e and νˉe\bar\nu_e-candidate events in neutrino and anti-neutrino mode, respectively. To date, these excesses have not been explained within the neutrino Standard Model (ν\nuSM), the Standard Model extended for three massive neutrinos. Confirmation is required by future experiments such as MicroBooNE. MiniBooNE also provided an opportunity for precision studies of Lorentz violation. The results set strict limits for the first time on several parameters of the Standard Model-Extension, the generic formalism for considering Lorentz violation. Most recently, an extension to MiniBooNE running, with a beam tuned in beam-dump mode, is being performed to search for dark sector particles. This review describes these studies, demonstrating that short baseline neutrino experiments are rich environments in new physics searches.

Keywords

Cite

@article{arxiv.1404.7759,
  title  = {Beyond Standard Model Searches in the MiniBooNE Experiment},
  author = {Teppei Katori and Janet Conrad},
  journal= {arXiv preprint arXiv:1404.7759},
  year   = {2014}
}

Comments

29 pages, 18 figures, preprint of an article submitted in Advances in High Energy Physics http://www.hindawi.com/journals/ahep/

R2 v1 2026-06-22T04:03:10.934Z