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New limits on heavy sterile neutrino mixing in ${^{8}\rm{B}}$-decay obtained with the Borexino detector

Authors :
Borexino collaboration
Bellini, G.
Benziger, J.
Bick, D.
Bonfini, G.
Bravo, D.
Avanzini, M. Buizza
Caccianiga, B.
Cadonati, L.
Calaprice, F.
Cavalcante, P.
Chavarria, A.
Chepurnov, A.
DAngelo, D.
Davini, S.
Derbin, A.
Drachnev, I.
Empl, A.
Etenko, A.
Fomenko, K.
Franco, D.
Galbiati, C.
Gazzana, S.
Ghiano, C.
Giammarchi, M.
Goger-Neff, M.
Goretti, A.
Grandi, L.
Hagner, C.
Hungerford, E.
Ianni, Aldo
Ianni, Andrea
Kobychev, V.
Korablev, D.
Korga, G.
Kryn, D.
Laubenstein, M.
Lewke, T.
Litvinovich, E.
Loer, B.
Lombardi, F.
Lombardi, P.
Ludhova, L.
Lukyanchenko, G.
Machulin, I.
Manecki, S.
Maneschg, W.
Manuzio, G.
Meindl, Q.
Meroni, E.
Miramonti, L.
Misiaszek, M.
Mosteiro, P.
Muratova, V.
Oberauer, L.
Obolensky, M.
Ortica, F.
Otis, K.
Pallavicini, M.
Papp, L.
Perasso, L.
Perasso, S.
Pocar, A.
Ranucci, G.
Razeto, A.
Re, A.
Romani, A.
Rossi, N.
Saldanha, R.
Salvo, C.
Schonert, S.
Simgen, H.
Skorokhvatov, M.
Smirnov, O.
Sotnikov, A.
Sukhotin, S.
Suvorov, Y.
Tartaglia, R.
Testera, G.
Vignaud, D.
Vogelaar, R. B.
von Feilitzsch, F.
Winter, J.
Wojcik, M.
Wright, A.
Wurm, M.
Xu, J.
Zaimidoroga, O.
Zavatarelli, S.
Zuzel, G.
Source :
Phys. Rev. D 88, 072010 (2013)
Publication Year :
2013

Abstract

If heavy neutrinos with mass $m_{\nu_{H}}\geq$2$ m_e $ are produced in the Sun via the decay ${^8\rm{B}} \rightarrow {^8\rm{Be}} + e^+ + \nu_H$ in a side branch of pp-chain, they would undergo the observable decay into an electron, a positron and a light neutrino $\nu_{H}\rightarrow\nu_{L}+e^++e^-$. In the present work Borexino data are used to set a bound on the existence of such decays. We constrain the mixing of a heavy neutrino with mass 1.5 MeV $\leq m_{\nu_{H}} \le$ 14 MeV to be $|U_{eH}|^2\leq (10^{-3}-4\times10^{-6})$ respectively. These are tighter limits on the mixing parameters than obtained in previous experiments at nuclear reactors and accelerators.<br />Comment: 7 pages, 6 figures

Details

Database :
arXiv
Journal :
Phys. Rev. D 88, 072010 (2013)
Publication Type :
Report
Accession number :
edsarx.1311.5347
Document Type :
Working Paper
Full Text :
https://doi.org/10.1103/PhysRevD.88.072010