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Constraining Super-light Sterile Neutrino Scenario by JUNO and RENO-50

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arxiv 1308.2823 v2 pith:KMO5P27H submitted 2013-08-13 hep-ph hep-ex

classification hep-phhep-ex
keywords neutrinoscenariojunosterileconstrainingexperimentsmassproposed
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

The Super-light Sterile Neutrino Scenario (SSNS) has been proposed in the literature to explain the suppression of the upturn in the low energy solar data. In this scenario, the mass splitting between the new mass eigenstate, $\nu_0$ and the standard $\nu_1$ is of order of $\Delta m_{01}^2\sim 10^{-5}$ eV$^2$. Reactor neutrino experiments with baseline larger than $\sim$20 km can help us to probe this scenario. We study the potential of upcoming JUNO and RENO-50 reactor experiments for discovering the superlight sterile neutrino or constraining its mixing parameters. We study the dependence of sensitivity to the SNSS and find that the proposed JUNO setup is very close to the optimal setup for probing the SSNS.

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