Measuring the electron neutrino mass using the electron capture decay of 163Ho
Abstract
While the mass differences between neutrino mass states are known, their absolute masses and mass hierarchy have not yet been determined. Determining the mass of neutrinos provides access to physics beyond the Standard Model and the resulting value has implications for the growth of large-scale structure in the universe over cosmic history. Because of the importance of the topic, a number of efforts are already underway to determine the mass of neutrinos including direct kinematic measurements and indirect measurements of astrophysical phenomena that constrain the sum of the mass eigenstates through models of cosmic evolution. Here, we advocate for a collaborative international effort to perform a kinematic determination of the effective electron neutrino mass using calorimetric measurements of the decay of 163Ho. This effort is justified by the success of current experiments using the technique, its high benefit-to-cost ratio, the value of approaches with different systematic errors, and the value of measuring the electron neutrino mass rather than the electron anti-neutrino mass.
Keywords
Cite
@article{arxiv.2203.07572,
title = {Measuring the electron neutrino mass using the electron capture decay of 163Ho},
author = {Joel Ullom and Daniel Schmidt and Simon Bandler and Thomas Stevenson and Mark Croce and Katrina Koehler and Matteo De Gerone and Loredana Gastaldo and Christian Enss and Geonbo Kim and Angelo Nucciotti and Stefano Ragazzi and Kyle Leach and Diana Parno and Brian Mong and Josef Frisch and Christopher Kenney},
journal= {arXiv preprint arXiv:2203.07572},
year = {2022}
}
Comments
contribution to Snowmass 2021