A new dark matter direct search based on archaeological Pb
Abstract
The RES-NOVA project is an experimental initiative aimed at detecting neutrinos from the next galactic supernova using PbWO cryogenic detectors, operated at low temperatures in a low-background environment. By utilizing archaeological lead (Pb) as the target material, RES-NOVA leverages its high radiopurity, large nuclear mass, and the natural abundance of Pb, making it well-suited for exploring both spin-independent and spin-dependent Dark Matter (DM) interactions via nuclear scattering. This work presents a background model developed for the RES-NOVA technology demonstrator and evaluates its implications for Dark Matter detection. Detailed calculations of nuclear matrix elements, combined with the unique properties of archaeological Pb, demonstrate RES-NOVA's potential as a complementary tool to existing direct detection experiments for studying Dark Matter interactions. The experiment will conduct DM searches over a broad mass range spanning 4 orders of magnitude, from sub-GeV/ to TeV/. In the most optimistic scenario, RES-NOVA is expected to probe DM-nucleon cross-sections down to 1 cm and 2 cm for candidates with masses of 2 GeV/ and 20 GeV/, respectively.
Cite
@article{arxiv.2501.12409,
title = {A new dark matter direct search based on archaeological Pb},
author = {D. Alloni and G. Benato and P. Carniti and M. Cataldo and L. Chen and M. Clemenza and M. Consonni and G. Croci and I. Dafinei and F. A. Danevich and D. Di Martino and E. Di Stefano and N. Ferreiro Iachellini and F. Ferroni and F. Filippini and S. Ghislandi and A. Giachero and L. Gironi and P. Gorla and C. Gotti and D. L. Helis and D. V. Kasperovych and V. V. Kobychev and G. Marcucci and A. Melchiorre and A. Menegolli and S. Nisi and M. Musa and L. Pagnanini and L. Pattavina and G. Pessina and S. Pirro and O. G. Polischuk and S. Pozzi and M. C. Prata and A. Puiu and S. Quitadamo and M. P. Riccardi and M. Rossella and R. Rossini and F. Saliu and A. Salvini and A. P. Scherban and D. A. Solopikhin and V. I. Tretyak and D. Trotta and H. Yuan},
journal= {arXiv preprint arXiv:2501.12409},
year = {2025}
}
Comments
updated limit calculation