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Studies of Quantum-Mechanical Coherency Effects in Neutrino-Nucleus Elastic Scattering

High Energy Physics - Experiment 2021-05-12 v2 High Energy Physics - Phenomenology Nuclear Experiment

Abstract

Neutrino-nucleus elastic scattering (νAel\nu {\rm A}_{el}) provides a unique laboratory to study the quantum-mechanical (QM) coherency effects in electroweak interactions. The deviations of the cross-sections from those of completely coherent systems can be quantitatively characterized through a coherency parameter α(q2)\alpha ( q^2 ). The relations between α\alpha and the underlying nuclear physics in terms of nuclear form factors are derived. The dependence of cross-section on α(q2)\alpha ( q^2 ) for the various neutrino sources is presented. The α(q2)\alpha ( q^2 )-values are evaluated from the measured data of the COHERENT CsI and Ar experiments. Complete coherency and decoherency conditions are excluded by the CsI data with p=0.004p {=} 0.004 at q2=3.1×103 MeV2q^2 {=} 3.1 {\times} 10^{3} ~ {\rm MeV^2} and with p=0.016p {=} 0.016 at q2=2.3×103 MeV2q^2 {=} 2.3 {\times} 10^{3} ~ {\rm MeV^2}, respectively, verifying that both QM superpositions and nuclear many-body effects contribute to νAel\nu {\rm A}_{el} interactions.

Keywords

Cite

@article{arxiv.2010.06810,
  title  = {Studies of Quantum-Mechanical Coherency Effects in Neutrino-Nucleus Elastic Scattering},
  author = {V. Sharma and L. Singh and H. T. Wong and M. Agartioglu and J. -W. Chen and M. Deniz and S. Kerman and H. B Li and C. -P. Liu and K. Saraswat and M. K. Singh and V. Singh},
  journal= {arXiv preprint arXiv:2010.06810},
  year   = {2021}
}

Comments

V2 Published Version, 10 pages, 10 figures