2019Unpublished venueOpen access

Standard and non-standard neutrino physics at reactor experiments

David Forero

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Abstract

In parallel to the standard oscillation physics program it is well known multi-detector reactor neutrino experiments are able to probe new physics scenarios, for instance, new oscillation phases driven by an extra light sterile neutrino and new neutrino interactions (NSI). Here we review and update the flavor non-universal and flavor universal constraints on the charged-current NSI parameters. We also study correlations between the NSI and the standard parameters.

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In parallel to the standard oscillation physics program it is well known multi-detector reactor neutrino experiments are able to probe new physics scenarios, for instance, new oscillation phases driven by an extra light sterile neutrino and new neutrino interactions (NSI). Here we review and update the flavor non-universal and flavor universal constraints on the charged-current NSI parameters. We also study correlations between the NSI and the standard parameters.

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Available abstract

In parallel to the standard oscillation physics program it is well known multi-detector reactor neutrino experiments are able to probe new physics scenarios, for instance, new oscillation phases driven by an extra light sterile neutrino and new neutrino interactions (NSI). Here we review and update the flavor non-universal and flavor universal constraints on the charged-current NSI parameters. We also study correlations between the NSI and the standard parameters.

Key concepts: Neutrino oscillation, Physics beyond the Standard Model, Physics, Particle physics, Neutrino, Sterile neutrino, Oscillation (cell signaling), Standard Model (mathematical formulation)

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