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MiniBooNE and MicroBooNE Combined Fit to a 3+1 Sterile Neutrino Scenario.

Authors :
Aguilar-Arevalo AA
Brown BC
Conrad JM
Dharmapalan R
Diaz A
Djurcic Z
Finley DA
Ford R
Garvey GT
Gollapinni S
Hourlier A
Huang EC
Kamp NW
Karagiorgi G
Katori T
Kobilarcik T
Lin K
Louis WC
Mariani C
Marsh W
Mills GB
Mirabal-Martinez J
Moore CD
Nelson RH
Nowak J
Pavlovic Z
Ray H
Roe BP
Russell AD
Schneider A
Shaevitz MH
Spitz J
Stancu I
Tayloe R
Thornton RT
Tzanov M
Van de Water RG
White DH
Zimmerman ED
Source :
Physical review letters [Phys Rev Lett] 2022 Nov 11; Vol. 129 (20), pp. 201801.
Publication Year :
2022

Abstract

This Letter presents the results from the MiniBooNE experiment within a full "3+1" scenario where one sterile neutrino is introduced to the three-active-neutrino picture. In addition to electron-neutrino appearance at short baselines, this scenario also allows for disappearance of the muon-neutrino and electron-neutrino fluxes in the Booster Neutrino Beam, which is shared by the MicroBooNE experiment. We present the 3+1 fit to the MiniBooNE electron-(anti)neutrino and muon-(anti)neutrino data alone and in combination with MicroBooNE electron-neutrino data. The best-fit parameters of the combined fit with the exclusive charged-current quasielastic analysis (inclusive analysis) are Δm^{2}=0.209  eV^{2}(0.033  eV^{2}), |U_{e4}|^{2}=0.016(0.500), |U_{μ4}|^{2}=0.500(0.500), and sin^{2}(2θ_{μe})=0.0316(1.0). Comparing the no-oscillation scenario to the 3+1 model, the data prefer the 3+1 model with a Δχ^{2}/d.o.f.=24.7/3(17.3/3), a 4.3σ(3.4σ) preference assuming the asymptotic approximation given by Wilks's theorem.

Details

Language :
English
ISSN :
1079-7114
Volume :
129
Issue :
20
Database :
MEDLINE
Journal :
Physical review letters
Publication Type :
Academic Journal
Accession number :
36461983
Full Text :
https://doi.org/10.1103/PhysRevLett.129.201801