Improved precision on 2-3 oscillation parameters using the synergy between DUNE and T2HK
Sanjib Kumar Agarwalla, Ritam Kundu, Masoom Singh

TL;DR
This paper demonstrates that combining DUNE and T2HK experiments significantly enhances the precision in measuring neutrino oscillation parameters, particularly $ heta_{23}$ and $ heta_{13}$, surpassing individual capabilities and aiding in resolving key neutrino physics questions.
Contribution
It provides a detailed analysis of how the synergy between DUNE and T2HK improves the precision of 2-3 neutrino oscillation parameters and helps resolve degeneracies.
Findings
DUNE + T2HK can establish non-maximal $ heta_{23}$ at 7$\sigma$
The combined experiments can improve the precision of $ heta_{23}$ by a factor of 7
Synergy allows better constraints on ($ heta_{23}$ - $ ext{CP}$ phase) plane.
Abstract
A high-precision measurement of and is inevitable to estimate the Earth's matter effect in long-baseline experiments which in turn plays an important role in addressing the issue of neutrino mass ordering and to measure the value of CP phase in framework. After reviewing the results from the past and present experiments, and discussing the near-future sensitivities from the IceCube Upgrade and KM3NeT/ORCA, we study the expected improvements in the precision of 2-3 oscillation parameters that the next-generation long-baseline experiments, DUNE and T2HK, can bring either in isolation or combination. We highlight the relevance of the possible complementarities between these two experiments in obtaining the improved sensitivities in determining the deviation from maximal mixing of , excluding the wrong-octant solution of , and…
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Taxonomy
TopicsAdvanced Electrical Measurement Techniques
