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The Spallation Neutron Source (SNS) at Oak Ridge National Laboratory, Tennessee, provides an intense flux of neutrinos in the few tens-of-MeV range, with a sharply-pulsed timing structure that is beneficial for background rejection.
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“The role of nu induced reactions on lead and iron in neutrino detectors.”
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“Lead perchlorate as a neutrino detection medium.”
M.K. Bacrania, P.J. Doe, S.R. Elliott, C.E. Paul, L.C. Stonehill, et al · 2002
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“A precise determination of electroweak parameters in neutrino nucleon scattering.”
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“Measurements of the interaction cross sections for Ar and Cl isotopes.”
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“Neutrino nucleus cross-section measurements at intense, pulsed spallation sources.”
F.T. Avignone and Yu.V. Efremenko · 2003
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“1 MW Pulse Spallation Neutron Source (JSNS) under the High Intensity Proton Accelerator Project.”
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P.S. Amanik and G.C. McLaughlin · 2009
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“The Neutrino Flux prediction at MiniBooNE.”
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“Measurement of the scintillation time spectra and pulse- shape discrimination of low-energy beta and nuclear recoils in liquid argon with DEAP-1.” (2009)
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“Event Excess in the MiniBooNE Search for ν ¯ μ → ν ¯ e \bar{\nu}_{\mu}\rightarrow\bar{\nu}_{e} Oscillations.”
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“Collective Neutrino Oscillations.”
H. Duan, G.M. Fuller, and Y.-Z. Qian · 2010
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Cecilia Lunardini · 2010
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Emission Detectors (World Scientific, 2010)
A.I. Bolozdynya · 2010
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“Measuring coherent-NC ν \nu As at Fermilab.” (2011)
J. Yoo · 2011
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“Project-X: A New high intensity proton accelerator complex at Fermilab.” (2011)
R. Tschirhart · 2011
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“Are there sterile neutrinos at the eV scale?”
J. Kopp, M. Maltoni, and T. Schwetz · 2011
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“Statistical Significance of the Gallium Anomaly.”
C. Giunti and M. Laveder · 2011
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