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|a dc
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|a Bungau, Adriana
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|a Massachusetts Institute of Technology. Department of Physics
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|a Massachusetts Institute of Technology. Laboratory for Nuclear Science
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|a Alonso, Jose Ramon
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|a Barletta, William A.
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|a Calanna, Alessandra
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|a Campo, Daniel
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|a Conrad, Janet
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|a Smidt, Tess E.
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|a Spitz, Joshua B.
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|a Winslow, Lindley
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|a Yang, J. J.
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|a Adelmann, A.
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|a Alonso, Jose Ramon
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|a Barletta, William A.
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|a Barlow, R. J.
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|a Bartoszek, L.
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|a Calabretta, L.
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|a Calanna, Alessandra
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|a Campo, Daniel
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|a Conrad, Janet
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|a Djurcic, Z.
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|a Kamyshkov, Y.
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|a Shaevitz, M. H.
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|a Shimizu, I.
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|a Smidt, Tess E.
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|a Spitz, Joshua B.
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|a Wascko, M.
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|a Winslow, Lindley
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|a Yang, J. J.
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|a Proposal for an Electron Antineutrino Disappearance Search Using High-Rate 8Li Production and Decay
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|b American Physical Society,
|c 2013-01-09T18:52:34Z.
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|z Get fulltext
|u http://hdl.handle.net/1721.1/76219
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|a This paper introduces an experimental probe of the sterile neutrino with a novel, high-intensity source of electron antineutrinos from the production and subsequent decay of [superscript 8]Li. When paired with an existing ~1 kton scintillator-based detector, this (E[subscript v])=6.4 MeV source opens a wide range of possible searches for beyond standard model physics via studies of the inverse beta decay interaction ν̅[subscript e]+p→[superscript +]+n. In particular, the experimental design described here has unprecedented sensitivity to ν[subscript e] disappearance at Δm[superscript 2]~1 eV[superscript 2] and features the ability to distinguish between the existence of zero, one, and two sterile neutrinos.
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|a en_US
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|a Article
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|t Physical Review Letters
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