arXiv:1805.01798·v3·High Energy Physics — Phenomenology
Prospects for exploring New Physics in Coherent Elastic Neutrino-Nucleus Scattering
Julien Billard🇫🇷 · Joseph Johnston🇺🇸 · Bradley J. Kavanagh🇳🇱
Abstract
Coherent Elastic Neutrino-Nucleus Scattering (CENS) is a Standard Model process that, although predicted for decades, has only been detected recently by the COHERENT collaboration. Now that CENS has been discovered, it provides a new probe for physics beyond the Standard Model. We study the potential to probe New Physics with CENS through the use of low temperature bolometers at a reactor source. We consider contributions to CENS due to a neutrino magnetic moment (NMM), Non-Standard Interactions (NSI) that may or may not change flavor, and simplified models containing a massive scalar or vector mediator. Targets consisting of Ge, Zn, Si, CaWO, and AlO are examined. We show that by reaching a percentage-level precision measurement on the CENS energy spectrum down to eV, forthcoming experiments will improve by two orders of magnitude both the CENS-based NMM limit and the search for new massive mediators. Additionally, we demonstrate that such dedicated low-threshold CENS experiments will lead to unprecedented constraints on NSI parameters (particularly when multiple targets are combined) which will have major implications for the global neutrino physics program.
Comments: 25 pages, 14 figures + appendices. v2: Added short discussion of leptoquark constraints. v3: matches version published in JCAP