European Physical Journal C: Particles and Fields (Oct 2023)

A 50 l Cygno prototype overground characterization

  • Fernando Domingues Amaro,
  • Rita Antonietti,
  • Elisabetta Baracchini,
  • Luigi Benussi,
  • Stefano Bianco,
  • Francesco Borra,
  • Cesidio Capoccia,
  • Michele Caponero,
  • Danilo Santos Cardoso,
  • Gianluca Cavoto,
  • Igor Abritta Costa,
  • Emiliano Dané,
  • Giorgio Dho,
  • Flaminia Di Giambattista,
  • Emanuele Di Marco,
  • Giulia D’Imperio,
  • Joaquim Marques Ferreira dos Santos,
  • Giovanni Grilli di Cortona,
  • Francesco Iacoangeli,
  • Ernesto Kemp,
  • Herman Pessoa Lima Júnior,
  • Guilherme Sebastiao Pinheiro Lopes,
  • Amaro da Silva Lopes Júnior,
  • Giovanni Maccarrone,
  • Rui Daniel Passos Mano,
  • Robert Renz Marcelo Gregorio,
  • David José Gaspar Marques,
  • Giovanni Mazzitelli,
  • Alasdair Gregor McLean,
  • Pietro Meloni,
  • Andrea Messina,
  • Cristina Maria Bernardes Monteiro,
  • Rafael Antunes Nobrega,
  • Igor Fonseca Pains,
  • Emiliano Paoletti,
  • Luciano Passamonti,
  • Sandro Pelosi,
  • Fabrizio Petrucci,
  • Stefano Piacentini,
  • Davide Piccolo,
  • Daniele Pierluigi,
  • Davide Pinci,
  • Atul Prajapati,
  • Francesco Renga,
  • Rita Cruz Roque,
  • Filippo Rosatelli,
  • Alessandro Russo,
  • Giovanna Saviano,
  • Neil John Curwen Spooner,
  • Roberto Tesauro,
  • Sandro Tomassini,
  • Samuele Torelli,
  • Donatella Tozzi

DOI
https://doi.org/10.1140/epjc/s10052-023-11988-9
Journal volume & issue
Vol. 83, no. 10
pp. 1 – 23

Abstract

Read online

Abstract The nature of dark matter is still unknown and an experimental program to look for dark matter particles in our Galaxy should extend its sensitivity to light particles in the GeV mass range and exploit the directional information of the DM particle motion (Vahsen et al. in CYGNUS: feasibility of a nuclear recoil observatory with directional sensitivity to dark matter and neutrinos, arXiv:2008.12587 , 2020). The Cygno project is studying a gaseous time projection chamber operated at atmospheric pressure with a Gas Electron Multiplier (Sauli in Nucl Instrum Meth A 386:531, https://doi.org/10.1016/S0168-9002(96)01172-2 , 1997) amplification and with an optical readout as a promising technology for light dark matter and directional searches. In this paper we describe the operation of a 50 l prototype named LIME (Long Imaging ModulE) in an overground location at Laboratori Nazionali di Frascati (LNF) of INFN. This prototype employs the technology under study for the 1 cubic meter Cygno demonstrator to be installed at the Laboratori Nazionali del Gran Sasso (LNGS) (Amaro et al. in Instruments 2022, 6(1), https://www.mdpi.com/2410-390X/6/1/6 , 2022). We report the characterization of LIME with photon sources in the energy range from few keV to several tens of keV to understand the performance of the energy reconstruction of the emitted electron. We achieved a low energy threshold of few keV and an energy resolution over the whole energy range of 10–20%, while operating the detector for several weeks continuously with very high operational efficiency. The energy spectrum of the reconstructed electrons is then reported and will be the basis to identify radio-contaminants of the LIME materials to be removed for future Cygno detectors.