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Direct Experimental Constraints on the Spatial Extent of a Neutrino Wavepacket

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arxiv 2404.03102 v3 pith:SUW2S53N submitted 2024-04-03 nucl-ex hep-exquant-ph

classification nucl-exhep-exquant-ph
keywords neutrinospatialdirectextenthighnaturenucleuswavepacket
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

Despite their high relative abundance in our Universe, neutrinos are the least understood fundamental particles of nature. They also provide a unique system to study quantum coherence and the wavelike nature of particles in fundamental systems due to their extremely weak interaction probabilities. In fact, the quantum properties of neutrinos emitted in experimentally relevant sources are virtually unknown and the spatial extent of the neutrino wavepacket is only loosely constrained by reactor neutrino oscillation data with a spread of 13 orders of magnitude. Here, we present the first direct limits of this quantity through a new experimental concept to extract the energy width, $\sigma_{\textrm{N},E}$, of the recoil daughter nucleus emitted in the nuclear electron capture (EC) decay of $^7$Be. The final state in the EC decay process contains a recoiling $^7$Li nucleus and an electron neutrino ($\nu_e$) which are entangled at their creation. The $^7$Li energy spectrum is measured to high precision by directly embedding $^7$Be radioisotopes into a high resolution superconducting tunnel junction that is operated as a cryogenic sensor. The lower limit on the spatial uncertainty of the recoil daughter was found to be $\sigma_{\textrm{N}, x} \geq 6.2$\,pm, which implies the final-state system is localized at a scale more than a thousand times larger than the nucleus itself. From this measurement, the first direct lower limits on the spatial extent of the neutrino wavepacket were extracted using two different theoretical methods. These results have wide-reaching implications in several areas including the nature of spatial localization at sub-atomic scales, interpretation of neutrino physics data, and the potential reach of future large-scale experiments.

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Cited by 2 Pith papers

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  1. Real and Virtual Propagation in Neutrino Oscillations

    hep-ph 2026-06 unverdicted novelty 6.0 of 10

    In Gaussian wave-packet QFT, flavor oscillations switch on only after a propagation-time threshold set by the wave-packet energy uncertainty and the intermediate particle's decay width; below it the neutrino is purely...

  2. Search for an Anomalous Excess of Single Photons in the MicroBooNE Neutrino Experiment

    hep-ex 2025-06 conditional novelty 6.0 of 10

    MicroBooNE observes no significant excess of neutral-current Delta radiative decay single photons, which disfavors enhanced-Delta explanations of the MiniBooNE anomaly but leaves zero-proton single-photon sources unco...

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