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- W2014660413 abstract "We present an update of our analysis of short-baseline neutrino oscillation data in the framework of $3+1$ neutrino mixing taking into account the recent update of MiniBooNE antineutrino data and the recent results of the MINOS search for ${ensuremath{nu}}_{ensuremath{mu}}$ disappearance into sterile neutrinos (the more complicated $3+2$ neutrino mixing is not needed since the $CP$-violating difference between MiniBooNE neutrino and antineutrino data has diminished). The results of our fits of short-baseline neutrino oscillation data including the MiniBooNE low-energy anomaly (now present both in the neutrino and antineutrino data) lead to a strong tension between appearance and disappearance data. Hence, it seems likely that the low-energy anomaly is not due to ${stackrel{(ensuremath{-})}{ensuremath{nu}}}_{ensuremath{mu}}ensuremath{rightarrow}{stackrel{(ensuremath{-})}{ensuremath{nu}}}_{e}$ transitions. Excluding the MiniBooNE low-energy anomaly, appearance and disappearance data are marginally compatible. The global analysis has the best-fit point at $ensuremath{Delta}{m}_{41}^{2}ensuremath{approx}5.6text{ }text{ }{mathrm{eV}}^{2}$, which is rather large in comparison with cosmological bounds, but there are three regions within $1ensuremath{sigma}$ at $ensuremath{Delta}{m}_{41}^{2}ensuremath{approx}1.6$, 1.2, $0.91text{ }text{ }{mathrm{eV}}^{2}$. We also show that the data on the Gallium neutrino anomaly favor values of $ensuremath{Delta}{m}_{41}^{2}$ larger than about $1text{ }text{ }{mathrm{eV}}^{2}$." @default.
- W2014660413 created "2016-06-24" @default.
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- W2014660413 date "2011-11-22" @default.
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- W2014660413 title "Status of<mml:math xmlns:mml=http://www.w3.org/1998/Math/MathML display=inline><mml:mn>3</mml:mn><mml:mo mathvariant=bold>+</mml:mo><mml:mn>1</mml:mn></mml:math>neutrino mixing" @default.
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- W2014660413 doi "https://doi.org/10.1103/physrevd.84.093006" @default.
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