Complementarity Between Neutrino Neutral and Charged Current Events in the Search for New Physics

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Main Authors: Gehrlein, Julia, Zink, Jaime Hoefken, Machado, Pedro A. N., Pinheiro, João Paulo
Format: Preprint
Published: 2026
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author Gehrlein, Julia
Zink, Jaime Hoefken
Machado, Pedro A. N.
Pinheiro, João Paulo
author_facet Gehrlein, Julia
Zink, Jaime Hoefken
Machado, Pedro A. N.
Pinheiro, João Paulo
contents At long-baseline neutrino experiments, neutral-current (NC) events accumulate in large numbers but are seldom exploited for new physics searches. We demonstrate their potential using non-standard neutrino interactions (NSI) with quarks as a case study. Charged-current (CC) analyses constrain NSI through matter effects on neutrino propagation, which probe almost exclusively the isoscalar combination of up- and down-quark couplings; the orthogonal isovector combination is suppressed by a factor of $\sim$100. Because NSI also modify NC cross sections in a flavor-dependent way, NC events become sensitive to oscillations: the far-to-near detector ratio acquires a dependence on the beam's flavor composition that probes both isoscalar and isovector couplings with comparable weight. Using existing NOvA data and DUNE projections, we derive the first bounded constraints on isovector NSI from a long-baseline experiment and show that combining CC and NC measurements resolves the individual quark couplings, breaking a degeneracy that persists in either analysis alone.
format Preprint
id arxiv_https___arxiv_org_abs_2604_16176
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Complementarity Between Neutrino Neutral and Charged Current Events in the Search for New Physics
Gehrlein, Julia
Zink, Jaime Hoefken
Machado, Pedro A. N.
Pinheiro, João Paulo
High Energy Physics - Phenomenology
At long-baseline neutrino experiments, neutral-current (NC) events accumulate in large numbers but are seldom exploited for new physics searches. We demonstrate their potential using non-standard neutrino interactions (NSI) with quarks as a case study. Charged-current (CC) analyses constrain NSI through matter effects on neutrino propagation, which probe almost exclusively the isoscalar combination of up- and down-quark couplings; the orthogonal isovector combination is suppressed by a factor of $\sim$100. Because NSI also modify NC cross sections in a flavor-dependent way, NC events become sensitive to oscillations: the far-to-near detector ratio acquires a dependence on the beam's flavor composition that probes both isoscalar and isovector couplings with comparable weight. Using existing NOvA data and DUNE projections, we derive the first bounded constraints on isovector NSI from a long-baseline experiment and show that combining CC and NC measurements resolves the individual quark couplings, breaking a degeneracy that persists in either analysis alone.
title Complementarity Between Neutrino Neutral and Charged Current Events in the Search for New Physics
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2604.16176