English

Solar Neutrino Detection Sensitivity in DARWIN via Electron Scattering

Instrumentation and Detectors 2020-12-22 v2 Solar and Stellar Astrophysics High Energy Physics - Experiment High Energy Physics - Phenomenology

Abstract

We detail the sensitivity of the liquid xenon (LXe) DARWIN observatory to solar neutrinos via elastic electron scattering. We find that DARWIN will have the potential to measure the fluxes of five solar neutrino components: pppp, 7^7Be, 13^{13}N, 15^{15}O and peppep. The precision of the 13^{13}N, 15^{15}O and peppep components is hindered by the double-beta decay of 136^{136}Xe and, thus, would benefit from a depleted target. A high-statistics observation of pppp neutrinos would allow us to infer the values of the weak mixing angle, sin2θw\sin^2\theta_w, and the electron-type neutrino survival probability, PeP_e, in the electron recoil energy region from a few keV up to 200 keV for the first time, with relative precision of 5% and 4%, respectively, at an exposure of 300 ty. An observation of pppp and 7^7Be neutrinos would constrain the neutrino-inferred solar luminosity down to 0.2%. A combination of all flux measurements would distinguish between the high (GS98) and low metallicity (AGS09) solar models with 2.1-2.5σ\sigma significance, independent of external measurements from other experiments or a measurement of 8^8B neutrinos through coherent elastic neutrino-nucleus scattering in DARWIN. Finally, we demonstrate that with a depleted target DARWIN may be sensitive to the neutrino capture process of 131^{131}Xe.

Keywords

Cite

@article{arxiv.2006.03114,
  title  = {Solar Neutrino Detection Sensitivity in DARWIN via Electron Scattering},
  author = {J. Aalbers and F. Agostini and S. E. M. Ahmed Maouloud and M. Alfonsi and L. Althueser and F. Amaro and J. Angevaare and V. C. Antochi and B. Antunovic and E. Aprile and L. Arazi and F. Arneodo and M. Balzer and L. Baudis and D. Baur and M. L. Benabderrahmane and Y. Biondi and A. Bismark and C. Bourgeois and A. Breskin and P. A. Breur and A. Brown and E. Brown and S. Brünner and G. Bruno and R. Budnik and C. Capelli and J. Cardoso and D. Cichon and M. Clark and A. P. Colijn and J. Conrad and J. J. Cuenca-García and J. P. Cussonneau and M. P. Decowski and A. Depoian and J. Dierle and P. Di Gangi and A. Di Giovanni and S. Diglio and D. Douillet and G. Drexlin and K. Eitel and R. Engel and E. Erdal and A. D. Ferella and H. Fischer and P. Fischer and W. Fulgione and P. Gaemers and M. Galloway and F. Gao and D. Giovagnoli and F. Girard and R. Glade-Beucke and F. Glück and L. Grandi and S. Grohmann and R. Größle and R. Gumbsheimer and V. Hannen and S. Hansmann-Menzemer and C. Hils and B. Holzapfel and J. Howlett and G. Iaquaniello and F. Jörg and M. Keller and J. Kellerer and G. Khundzakishvili and B. Kilminster and M. Kleifges and T. K. Kleiner and G. Koltmann and A. Kopec and A. Kopmann and L. M. Krauss and F. Kuger and L. LaCascio and H. Landsman and R. F. Lang and S. Lindemann and M. Lindner and F. Lombardi and J. A. M. Lopes and A. Loya Villalpando and Y. Ma and C. Macolino and J. Mahlstedt and A. Manfredini and T. Marrodán Undagoitia and J. Masbou and D. Masson and E. Masson and N. McFadden and P. Meinhardt and R. Meyer and B. Milosevic and S. Milutinovic and A. Molinario and C. M. B. Monteiro and K. Morå and E. Morteau and Y. Mosbacher and M. Murra and J. L. Newstead and K. Ni and U. G. Oberlack and M. Obradovic and K. Odgers and I. Ostrovskiy and J. Palacio and M. Pandurovic and B. Pelssers and R. Peres and J. Pienaar and M. Pierre and V. Pizzella and G. Plante and J. Qi and J. Qin and D. Ramírez García and S. E. Reichard and N. Rupp and P. Sanchez-Lucas and J. Santos and G. Sartorelli and D. Schulte and H. -C. Schultz-Coulon and H. Schulze Eißing and M. Schumann and L. Scotto Lavina and M. Selvi and P. Shagin and S. Sharma and W. Shen and M. Silva and H. Simgen and M. Steidl and S. Stern and D. Subotic and P. Szabo and A. Terliuk and C. Therreau and D. Thers and K. Thieme and F. Toennies and R. Trotta and C. D. Tunnell and K. Valerius and G. Volta and D. Vorkapic and M. Weber and Y. Wei and C. Weinheimer and M. Weiss and D. Wenz and C. Wittweg and J. Wolf and S. Wuestling and M. Wurm and Y. Xing and T. Zhu and Y. Zhu and J. P. Zopounidis and K. Zuber},
  journal= {arXiv preprint arXiv:2006.03114},
  year   = {2020}
}

Comments

9 pages, 4 figures; for associated data files, see https://github.com/Physik-Institut-UZH/DARWIN-Sensitivity-Studies/tree/master/solar_neutrinos_electron_scattering