Electron energy spectra, fluxes, and day-night asymmetries of boron-8 solar neutrinos from the 391-day salt phase sno data set

B. Aharmim,S. N. Ahmed,A. E. Anthony,E. W. Beier,Alain Bellerive,M. Bergevin,S. D. Biller,J. Boger,M.G. Boulay,M. G. Bowler,T. V. Bullard,Yuen-Dat Chan,Min Chen,X. Chen,B. T. Cleveland,G. A. Cox,C. Currat,X. Dai,F. Dalnoki-Veress,H. Deng,P. J. Doe,R. S. Dosanjh,G. Doucas,C. A. Duba,F. A. Duncan, Monica Dunford,J. A. Dunmore,E. D. Earle,S. R. Elliott,Hal Evans,G. T. Ewan,J. Farine,H. Fergani,F. Fleurot,Joseph A. Formaggio,K. Frame,W. Frati,B. G. Fulsom,N. Gagnon,K. Graham,Darren Grant,R. L. Hahn,J. C. Hall,A. L. Hallin,E. D. Hallman,W. B. Handler,C. K. Hargrove,P. J. Harvey,Ryuta Hazama,K. M. Heeger,L. Heelan, W. J. Heintzelman,J. Heise,R. L. Helmer,R. J. Hemingway,Andrew Hime,C. Howard, Howe,M. Huang,P. Jagam,N. A. Jelley,Joshua R. Klein,L. L. Kormos, Kos,A. Krüger,C. Kraus,C. B. Krauss,A. V. Krumins,T. Kutter,Christopher C. M. Kyba,H. Labranche,R. Lange,J. Law,I. T. Lawson,K. T. Lesko,J. R. Leslie,I. Levine,J. C. Loach,S. Luoma,R. MacLellan,S. Majerus,H. B. Mak,J. Maneira,A. D. Marino,N. McCauley,A. B. McDonald,S. McGee,G. McGregor,C. Mifflin,K.K.S. Miknaitis,B. A. Moffat, C. W. Nally, Neubauer, Bernie G. Nickel,A. J. Noble,Eric B. Norman,N. S. Oblath,C. E. Okada,R. W. Ollerhead,John L. Orrell,S. M. Oser,C. Ouellet,S. J. M. Peeters,A. W. P. Poon,Keith Rielage,B. C. Robertson,R. G. H. Robertson,E. Rollin, S. S.E. Rosendahl,V. L. Rusu,M. H. Schwendener, S. R. Seibert,O. Simard,J. J. Simpson,C. J. Sims,David A. Sinclair,P. Skensved, M. W.E. Smith,N. Starinsky,R. G. Stokstad,L. C. Stonehill,Reda Tafirout,Y. Takeuchi,G. Tešić,Marcus J. Thomson,M. Thorman,T. Tsui,R. Van,Van Berg,de Water,C. J. Virtue,B. L. Wall,D. Waller,Chris Waltham,H. Wan,Chan Tseung,D. L. Wark,J. Wendland,N. West,J. F. Wilkerson,J. R. Wilson,Peter Wittich,J. M. Wouters,A. Wright,Minfang Yeh,Kai Zuber

Lawrence Berkeley National Laboratory(2005)

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Author(s): Aharmim, B.; Ahmed, S.N.; Anthony, A.E.; Beier, E.W.; Bellerive, A.; Bergevin, M.; Biller, S.D.; Boger, J.; Boulay, M.G.; Bowler, M.G.; Bullard, T.V.; Chan, Y.D.; Chen, M.; Chen, X.; Cleveland, B.T.; Cox, G.A.; Currat, C.A.; Dai, X.; Dalnoki-Veress, F.; Deng, H.; Doe, P.J.; Dosanjh, R.S.; Doucas, G.; Duba, C.A.; Duncan, F.A.; Dunford, M.; Dunmore, J.A.; Earle, E.D.; Elliott, S.R.; Evans, H.C.; Ewan, G.T.; Farine, J.; Fergani, H.; Fleurot, F.; Formaggio, J.A.; Frame, K.; Frati, W.; Fulsom, B.G.; Gagnon, N.; Graham, K.; Grant, D.R.; Hahn, R.L.; Hall, J.C.; Hallin, A.L.; Hallman, E.D.; Handler, W.B.; Hargrove, C.K.; Harvey, P.J.; Hazama, R.; Heeger, K.M.; Heelan, L.; Heintzelman, W.J.; Heise, J.; Helmer, R.L.; Hemingway, R.J.; Hime, A.; Howard, C.; Howe, M.A.; Huang, M.; Jagam, P.; Jelley, N.A.; Klein, J.R.; Kormos, L.L.; Kos, M.S.; Kruger, A.; Kraus, C.; Krauss, C.B.; Krumins, A.V.; Kutter, T.; Kyba, C.C.M.; Labranche, H.; Lange, R.; Law, J.; Lawson, I.T.; Lesko, K.T.; Leslie, J.R.; Levine, I.; Loach, J.C.; Luoma, S.; MacLellan, R.; Majerus, S.; Mak, H.B.; Maneira, J.; Marino, A.D.; McCauley, N. | Abstract: Results are reported from the complete salt phase of the Sudbury Neutrino Observatory experiment in which NaCl was dissolved in the D_2O target. The addition of salt enhanced the signal from neutron capture, as compared to the pure D_2O detector. By making a statistical separation of charged-current events from other types based on event-isotropy criteria, the effective electron recoil energy spectrum has been extracted. In units of 106 cm-2 s-1, the total flux of active-flavor neutrinos from 8B decay in the Sun is found to be 4.94+0.21_-0.21(stat)+0.38_-0.34(syst) and the integral flux of electron neutrinos for an undistorted 8B spectrum is 1.68+0.06_-0.06(stat)+0.08_-0.09(syst); the signal from (nu_x,e) elastic scattering is equivalent to an electron-neutrino flux of 2.35+0.22-0.22(stat)+0.15_-0.15(syst). These results are consistent with those expected for neutrino oscillations with the so-called Large Mixing Angle parameters, and also with an undistorted spectrum. A search for matter-enhancement effects in the Earth through a possible day-night asymmetry in the charged-current integral rate is consistent with no asymmetry. Including results from other experiments, the best-fit values for two-neutrino mixing parameters are Delta m2 = (8.0+0.6_-0.4) x 10-5 eV2 and theta = 33.9 +2.4_-2.2 degrees.
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solar neutrinos,day-night
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