Nuclear $\beta$ decay as a probe for physics beyond the Standard Model
Nuclear Experiment
2023-01-11 v1 Nuclear Theory
Abstract
This white paper was submitted to the 2022 Fundamental Symmetries, Neutrons, and Neutrinos (FSNN) Town Hall Meeting in preparation for the next NSAC Long Range Plan. We advocate to support current and future theoretical and experimental searches for physics beyond the Standard Model using nuclear decay.
Cite
@article{arxiv.2301.03975,
title = {Nuclear $\beta$ decay as a probe for physics beyond the Standard Model},
author = {M. Brodeur and N. Buzinsky and M. A. Caprio and V. Cirigliano and J. A. Clark and P. J. Fasano and J. A. Formaggio and A. T. Gallant and A. Garcia and S. Gandolfi and S. Gardner and A. Glick-Magid and L. Hayen and H. Hergert and J. D. Holt and M. Horoi and M. Y. Huang and K. D. Launey and K. G. Leach and B. Longfellow and A. Lovato and A. E. McCoy and D. Melconian and P. Mohanmurthy and D. C. Moore and P. Mueller and E. Mereghetti and W. Mittig and P. Navratil and S. Pastore and M. Piarulli and D. Puentes and B. C. Rasco and M. Redshaw and G. H. Sargsyan and G. Savard and N. D. Scielzo and C. -Y. Seng and A. Shindler and S. R. Stroberg and J. Surbrook and A. Walker-Loud and R. B. Wiringa and C. Wrede and A. R. Young and V. Zelevinsky},
journal= {arXiv preprint arXiv:2301.03975},
year = {2023}
}
Comments
12 pages, 2 figures, White paper submitted to the 2022 Fundamental Symmetries, Neutrons, and Neutrinos (FSNN) Town Hall Meeting at the University of North Carolina Chapel Hill