English

Coherent elastic neutrino-nucleus scattering: Terrestrial and astrophysical applications

High Energy Physics - Phenomenology 2025-04-07 v1 High Energy Astrophysical Phenomena High Energy Physics - Experiment

Abstract

Coherent elastic neutrino-nucleus scattering (CEν\nuNS) is a process in which neutrinos scatter on a nucleus which acts as a single particle. Though the total cross section is large by neutrino standards, CEν\nuNS has long proven difficult to detect, since the deposited energy into the nucleus is \sim keV. In 2017, the COHERENT collaboration announced the detection of CEν\nuNS using a stopped-pion source with CsI detectors, followed up the detection of CEν\nuNS using an Ar target. The detection of CEν\nuNS has spawned a flurry of activities in high-energy physics, inspiring new constraints on beyond the Standard Model (BSM) physics, and new experimental methods. The CEν\nuNS process has important implications for not only high-energy physics, but also astrophysics, nuclear physics, and beyond. This whitepaper discusses the scientific importance of CEν\nuNS, highlighting how present experiments such as COHERENT are informing theory, and also how future experiments will provide a wealth of information across the aforementioned fields of physics.

Keywords

Cite

@article{arxiv.2203.07361,
  title  = {Coherent elastic neutrino-nucleus scattering: Terrestrial and astrophysical applications},
  author = {M. Abdullah and H. Abele and D. Akimov and G. Angloher and D. Aristizabal-Sierra and C. Augier and A. B. Balantekin and L. Balogh and P. S. Barbeau and L. Baudis and A. L. Baxter and C. Beaufort and G. Beaulieu and V. Belov and A. Bento and L. Berge and I. A. Bernardi and J. Billard and A. Bolozdynya and A. Bonhomme and G. Bres and J-. L. Bret and A. Broniatowski and A. Brossard and C. Buck and M. Cadeddu and M. Calvo and L. Canonica and F. Cappella and L. Cardani and N. Casali and A. Cazes and R. Cerulli and D. Chaize and C. Chang and M. Chapellier and L. Chaplinsky and G. Chemin and R. Chen and I. Colantoni and J. Colas and P. Coloma and E. C. Corcoran and S. Crawford and A. Cruciani and A. Dastgheibi Fard and M. De Jesus and P. de Marcillac and V. De Romeri and G. del Castello and M. del GalloRoccagiovine and D. Delicato and M. Demarteau and Y. Deng and J. B. Dent and P. B. Denton and K. Dering and A. Doblhammer and F. Dordei and S. Dorer and L. Dumoulin and D. Dunford and B. Dutta and A. Erhart and O. Exshaw and S. Ferriol and E. Figueroa-Feliciano and J. B. Filippini and L . J. Flores and J. A. Formaggio and M. Friedl and S. Fuard and F. Gao and A. Garai and E. A. Garces and J. Gascon and J. Gehrlein and G. Gerbier and V. M. Ghete and I. Giomataris and G. Giroux and A. Giuliani and C. Giunti and P. Gorel and C. Goupy and J. Goupy and C. Goy and M. P. Green and M. Gros and C. Guerin and V. Guidi and O. Guillaudin and E. Guy and C. Ha and D. Hauff and J. Hakenmuller and P. M. Harrington and S. Hedges and S. T. Heine and S. Hertel and M. Heusch and C. Hoarau and M. Hoferichter and E. W. Hoppe and Z. Hong and S. Horiuchi and P. Huber and J. C. Ianigro and N. Jachowicz and E. Jericha and Y. Jin and J. P. Johnston and A. Juillard and I. Katsioulas and S. Kazarcev and M. Kaznacheeva and F. Kelly and K. J. Kelly and D. Kim and A. Kinast and L. Klinkenberg and H. Kluck and P. Knights and Y. J. Ko and T. S. Kosmas and L. Kwon and J. Lamblin and R. F. Lang and A. Langenkamper and S. Langrock and T. Lasserre and H. Lattaud and P. Lautridou and H. S. Lee and B. G. Lenardo and D. Lhuillier and M. Li and S. C. Li and Y. F. Li and Z. Li and M. Lindner and J. Liu and D. Loomba and A. Lubashevskiy and P. A. N. Machado and M. Mancuso and W. Maneschg and D. M. Markoff and S. Marnieros and R. Martin and R. D. Martin and B. Mauri and D. W. Mayer and A. Mazzolari and E. Mazzucato and J. Menendez and J. Minet and O. G. Miranda and D. Misiak and J. -P. Mols and A. Monfardini and F. Mounier and J. F. Muraz and T. Neep and R. Neilson and J. Newby and J. L. Newstead and H. Neyrial and K. Ni and K. Nikolopoulos and C. Nones and D. Norcini and V. Pandey and P. O'Brien and C. A. J. O'Hare and L. Oberauer and W. Oliver and E. Olivieri and A. Onillon and C. Oriol and T. Ortmann and R. Owen and K. J. Palladino and D. K. Papoulias and J. C. Park and D. S. Parno and P. K. Patel and L. Pattavina and E. Peinado and E. Perbet and L. Peters and F. Petricca and H. D. Pinckney and M. -C. Piro and D. Ponomarev and D. Poda and W. Potzel and F. Probst and F. Pucci and F. Rarbi and R. Rapp and H. Ray and J. -S. Real and F. Reindl and G. C. Rich and J. S. Ricol and T. Rink and T. Redon and R. Rogly and A. Robert and J. Rothe and S. Rozov and I. Rozova and T. Salagnac and E. Sanchez Garcia and G. Sanchez Garcia and O. Sanders and V. Sanglard and D. Santos and Y. Sarkis and V. Savu and G. Savvidis and I. Savvidis and N. Schermer and J. Schieck and B. Schmidt and S. Schonert and K. Scholberg and A. Schwenk and C. Schwertner and L. Scola and Ye. Shevchik and S. Shin and V. Sibille and I. M. Shoemaker and D. P. Snowden-Ifft and T. Soldner and G. Soum and N. J. C. Spooner and J. Stachurska and L. Stodolsky and R. Strauss and L. E. Strigari and A. Stutz and B. D. Suh and J. Suhonen and Z. Tabrizi and V. Takhistov and A. Thompson and C. Tomei and M. Tortola and M. Tripathi and L. Vagneron and J. W. F. Valle and K. v. Mirbach and W. Van De Pontseele and M. Vignati and M. Vivier and F. Vazquez de Sola Fernandez and F. Vezzu and M. Vidal and V. Wagner and J. W. Walker and R. Ward and A. Wex and L. Winslow and H. T. Wong and M. H. Wood and J. Xu and L. Yang and E. Yakushev and M. Zampaolo and J. Zettlemoyer and Y. Y. Zhang and D. Zinatulina},
  journal= {arXiv preprint arXiv:2203.07361},
  year   = {2025}
}

Comments

contribution to Snowmasss 2021. Contact authors: P. S. Barbeau, R. Strauss, L. E. Strigari