English

Comprehensive geoneutrino analysis with Borexino

High Energy Physics - Experiment 2020-02-18 v2 Geophysics

Abstract

This paper presents a geoneutrino measurement using 3262.74 days of data taken with the Borexino detector at LNGS in Italy. By observing 52.68.6+9.4(stat)2.1+2.7(sys)52.6 ^{+9.4}_{-8.6} ({\rm stat}) ^{+2.7}_{-2.1}({\rm sys}) geoneutrinos (68% interval) from 238^{238}U and 232^{232}Th, a signal of 47.07.7+8.4(stat)1.9+2.4(sys)47.0^{+8.4}_{-7.7}\,({\rm stat)}^{+2.4}_{-1.9}\,({\rm sys}) TNU with 17.2+18.3^{+18.3}_{-17.2}% total precision was obtained. This result assumes the same Th/U mass ratio found in chondritic CI meteorites but compatible results were found when contributions from 238^{238}U and 232^{232}Th were fit as free parameters. Antineutrino background from reactors is fit unconstrained and found compatible with the expectations. The null-hypothesis of observing a signal from the mantle is excluded at a 99.0% C.L. when exploiting the knowledge of the local crust. Measured mantle signal of 21.29.0+9.6(stat)0.9+1.1(sys)21.2 ^{+9.6}_{-9.0} ({\rm stat})^{+1.1}_{-0.9} ({\rm sys}) TNU corresponds to the production of a radiogenic heat of 24.610.4+11.124.6 ^{+11.1}_{-10.4} TW (68% interval) from 238^{238}U and 232^{232}Th in the mantle. Assuming 18% contribution of 40^{40}K in the mantle and 8.11.4+1.98.1^{+1.9}_{-1.4} TW of radiogenic heat of the lithosphere, the Borexino estimate of the total Earth radiogenic heat is 38.212.7+13.638.2 ^{+13.6}_{-12.7} TW, corresponding to a convective Urey ratio of 0.780.28+0.41^{+0.41}_{-0.28}. These values are compatible with different geological models, however there is a 2.4σ\sigma tension with those which predict the lowest concentration of heat-producing elements. By fitting the data with a constraint on the reactor antineutrino background, the existence of a hypothetical georeactor at the center of the Earth having power greater than 2.4 TW at 95% C.L. is excluded. Particular attention is given to all analysis details, which should be of interest for the next generation geoneutrino measurements.

Cite

@article{arxiv.1909.02257,
  title  = {Comprehensive geoneutrino analysis with Borexino},
  author = {M. Agostini and K. Altenmüller and S. Appel and V. Atroshchenko and Z. Bagdasarian and D. Basilico and G. Bellini and J. Benziger and D. Bick and G. Bonfini and D. Bravo and B. Caccianiga and F. Calaprice and A. Caminata and L. Cappelli and P. Cavalcante and F. Cavanna and A. Chepurnov and K. Choi and D. D'Angelo and S. Davini and A. Derbin and A. Di Giacinto and V. Di Marcello and X. F. Ding and A. Di Ludovico and L. Di Noto and I. Drachnev and G. Fiorentini and A. Formozov and D. Franco and F. Gabriele and C. Galbiati and M. Gschwender and C. Ghiano and M. Giammarchi and A. Goretti and M. Gromov and D. Guffanti and C. Hagner and E. Hungerford and Aldo Ianni and Andrea Ianni and A. Jany and D. Jeschke and S. Kumaran and V. Kobychev and G. Korga and T. Lachenmaier and T. Lasserre and M. Laubenstein and E. Litvinovich and P. Lombardi and I. Lomskaya and L. Ludhova and G. Lukyanchenko and L. Lukyanchenko and I. Machulin and F. Mantovani and G. Manuzio and S. Marcocci and J. Maricic and J. Martyn and E. Meroni and M. Meyer and L. Miramonti and M. Misiaszek and M. Montuschi and V. Muratova and B. Neumair and M. Nieslony and L. Oberauer and A. Onillon and V. Orekhov and F. Ortica and M. Pallavicini and L. Papp and Ö. Penek and L. Pietrofaccia and N. Pilipenko and A. Pocar and G. Raikov and M. T. Ranalli and G. Ranucci and A. Razeto and A. Re and M. Redchuk and B. Ricci and A. Romani and N. Rossi and S. Rottenanger and S. Schönert and D. Semenov and M. Skorokhvatov and O. Smirnov and A. Sotnikov and V. Strati and Y. Suvorov and R. Tartaglia and G. Testera and J. Thurn and E. Unzhakov and A. Vishneva and M. Vivier and R. B. Vogelaar and F. von Feilitzsch and M. Wojcik and M. Wurm and O. Zaimidoroga and S. Zavatarelli and K. Zuber and G. Zuzel},
  journal= {arXiv preprint arXiv:1909.02257},
  year   = {2020}
}

Comments

69 pages, 56 Figures (some composed of multiple files), 17 Tables, 135 References

R2 v1 2026-06-23T11:06:27.242Z