Analysis of neutrino oscillation parameters in the light on quantum entanglement
Rajrupa Banerjee, Papia Panda, Rukmani Mohanta, Sudhanwa Patra

TL;DR
This paper explores neutrino entanglement in three-flavor oscillations, revealing bipartite entanglement structures, their relation to oscillation parameters, and implications for fundamental neutrino properties.
Contribution
It introduces a detailed analysis of neutrino flavor entanglement using EOF and concurrence, applying monogamy relations and minimization procedures to connect entanglement with oscillation parameters.
Findings
Maximal entanglement between ν_μ and ν_τ
ν_e behaves as nearly separable
Enhanced sensitivity to mass hierarchy with concurrence minimization
Abstract
Numerous neutrino experiments have confirmed the phenomenon of neutrino oscillation, providing direct evidence of the quantum mechanical nature of neutrinos. In this work, we investigate the entanglement properties of neutrino flavor states within the framework of three-flavor neutrino oscillation using two major entanglement measures: entanglement of formation (EOF) and concurrence, utilizing the DUNE experimental setup. Our findings indicate that the maximally entangled state appears between and whereas, behaves as a nearly separable state. To further explore the nature of bipartite entanglement, we introduce the concept of the monogamy of entanglement, which allows us to investigate the distinction between genuine three-flavor entanglement and bipartite entanglement. Our analysis confirms that the three-flavor neutrino system forms a bipartite…
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Taxonomy
TopicsNeutrino Physics Research · Dark Matter and Cosmic Phenomena · Particle physics theoretical and experimental studies
