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  • Letter

Probing Lorentz violation in 2νββ using single electron spectra and angular correlations

O. V. Niţescu1,2,3, S. A. Ghinescu1,2,3, M. Mirea1,2,*, and S. Stoica1,2,†

  • 1“Horia Hulubei” National Institute of Physics and Nuclear Engineering, 30 Reactorului, POB MG-6, RO-077125 Bucharest-Măgurele, Romania
  • 2International Centre for Advanced Training and Research in Physics, PO Box MG12, 077125-Magurele, Romania
  • 3Faculty of Physics, University of Bucharest, 405 Atomiştilor, POB MG-11, RO-077125 Bucharest-Măgurele, Romania

  • *Deceased.
  • †Corresponding author. sabin.stoica@cifra-c2unesco.ro

Phys. Rev. D 103, L031701 – Published 23 February, 2021

DOI: https://doi.org/10.1103/PhysRevD.103.L031701

Abstract

We show that the current search for Lorentz invariance violation (LIV) in the summed energy spectra of electrons in 2νββ decay can be extended by investigating the single electron spectra and the angular correlation between the emitted electrons. We derive and calculate the LIV contributions to these spectra associated with the isotropic part of the countershaded operator and controlled through the coefficient a∘of(3) and discuss possible signatures that may be probed in experiments. First, we show that some distortion occurs in the single electron spectrum, maximal at small electron energies. Then, we show that other LIV effects may be highlighted by analyzing the angular correlation spectra and the ratio between the Standard Model extension electron spectra and their Standard Model forms. We found that these LIV signatures depend on the magnitude of a∘of(3), manifest differently for positive and negative values of this coefficient, and become more pronounced as the electron energy approaches the Q value. Finally, we propose an alternative, new method to constrain a∘of(3) through the measurement of the angular correlation coefficient. Using this method, and considering only statistical uncertainties, we obtain bounds of a∘of(3) at the level of present ones, obtained from summed energy spectra. We show that future experiments can improve these limits significantly. Our study is performed for Mo100, but the results hold qualitatively for other nuclei that undergo a double-beta decay. We hope our results will provide additional motivation for the LIV analyses performed in DBD experiments.

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See Also

Investigation of the Lorentz invariance violation in two-neutrino double-beta decay

S. A. Ghinescu, O. Niţescu, and S. Stoica
Phys. Rev. D 105, 055032 (2022)

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