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arXiv:2601.18397·v1·High Energy Physics — Phenomenology

Testing residual-symmetry-fixed columns of at DUNE and T2HK with initial JUNO constraints

Debajyoti Dutta🇮🇳 · Srubabati Goswami🇮🇳 · Monal Kashav🇮🇳 · Ketan M. Patel🇮🇳

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Abstract

We study fixed-column predictions of the lepton mixing matrix that arise from residual symmetries originating in a class of discrete flavour and modular symmetries. While the recent high-precision determination of by JUNO already constrains part of these predictions, the remaining ones are primarily characterized by non-trivial correlations between and the Dirac CP phase , which are currently only weakly constrained. This motivates a detailed investigation using next-generation long-baseline neutrino experiments. For the viable scenarios, we derive precise - correlations and use them to generate test-event samples, marginalising over the remaining oscillation parameters. We perform detailed simulations for DUNE and T2HK, presenting allowed regions in the - plane and evaluating the CP-violation fraction as a function of exposure. Our results show that the combined sensitivity of DUNE and T2HK provides a robust test of fixed-column lepton-mixing predictions.

Comments: 29 Pages, 4 tables, 10 figures

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