Classical Reconstruction of the PMNS Matrix Using a Mechanical Neutrino Oscillator

Fuente: arXiv
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Main Author: Savla, Nishil
Format: Preprint
Published: 2025
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author Savla, Nishil
author_facet Savla, Nishil
contents Neutrino oscillations arise from quantum interference between neutrino mass eigenstates and are governed by the PMNS matrix. Although this is an intrinsically quantum phenomenon, its mathematical structure is analogous to systems of coupled classical oscillators. In this work, a three--pendulum system connected by springs is constructed as a classical analog of three--flavor neutrino oscillations. Measurements of amplitude transfer, normal--mode structure, and beat frequencies are used to extract a mechanical mixing matrix, which is compared with the structure of the PMNS matrix under the assumption of zero CP violation. A scaling relation linking mechanical time evolution to the neutrino \(L/E\) behavior is derived, clarifying the scope and limitations of the analogy. The experiment demonstrates how abstract concepts of neutrino mixing can be visualized using simple and accessible classical systems, offering both pedagogical value and a qualitative understanding of flavor oscillation dynamics.
format Preprint
id arxiv_https___arxiv_org_abs_2512_01851
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Classical Reconstruction of the PMNS Matrix Using a Mechanical Neutrino Oscillator
Savla, Nishil
Popular Physics
Physics Education
Neutrino oscillations arise from quantum interference between neutrino mass eigenstates and are governed by the PMNS matrix. Although this is an intrinsically quantum phenomenon, its mathematical structure is analogous to systems of coupled classical oscillators. In this work, a three--pendulum system connected by springs is constructed as a classical analog of three--flavor neutrino oscillations. Measurements of amplitude transfer, normal--mode structure, and beat frequencies are used to extract a mechanical mixing matrix, which is compared with the structure of the PMNS matrix under the assumption of zero CP violation. A scaling relation linking mechanical time evolution to the neutrino \(L/E\) behavior is derived, clarifying the scope and limitations of the analogy. The experiment demonstrates how abstract concepts of neutrino mixing can be visualized using simple and accessible classical systems, offering both pedagogical value and a qualitative understanding of flavor oscillation dynamics.
title Classical Reconstruction of the PMNS Matrix Using a Mechanical Neutrino Oscillator
topic Popular Physics
Physics Education
url https://arxiv.org/abs/2512.01851