English

Neutrinoless double-beta decay search with the LEGEND experiment

Nuclear Experiment 2025-01-20 v1

Abstract

Neutrinoless double-beta decay is a nuclear decay, given as (A,Z)(A,Z+2)+2e(A,Z) \rightarrow (A, Z+2) +2e^{-}, with deep consequences for the understanding of our universe. A strong experimental program is underway to search for this transition with many proposed experiments using different technologies. In this article the LEGEND experiment, which uses 76^{76}Ge as the isotope of interest, will be described. We will discuss both the first stage, LEGEND-200, which is now taking data at the Laboratori Nazionali del Gran Sasso of INFN in Italy, and the future stage, LEGEND-1000. LEGEND-200 has analyzed a first sample of data (48.3 kg\cdotyr) collected from March 2023 to February 2024 with a background index not far away from its goal of 2×\times104^{-4} cnts/(keV\cdotkg\cdotyr). Combining the LEGEND-200 data with those of \textsc{Gerda}\ and \textsc{Majorana Demonstrator}\ one obtains a sensitivity on the half-life of 0νββ\nu\beta\beta decay in 76^{76}Ge of T1/2>T_{1/2} > 2.8 ×\times 1026^{26} yr at 90\% C.L. and a limit on T1/2>T_{1/2} > 1.9 ×\times 1026^{26} yr at 90\% C.L.

Keywords

Cite

@article{arxiv.2501.10046,
  title  = {Neutrinoless double-beta decay search with the LEGEND experiment},
  author = {R. Brugnera},
  journal= {arXiv preprint arXiv:2501.10046},
  year   = {2025}
}

Comments

5 pages, 3 figure

R2 v1 2026-06-28T21:09:06.074Z