Radon-induced backgrounds in the NEXT-100 experiment
Abstract
The NEXT-100 detector at the LSC aims at the first competitive search for the \bbnonu decay using a high-pressure \Xe{136} electroluminescent time projection chamber. The first low-background run of NEXT-100 at 3.95 bar has been devoted to the measurement of the radon-induced backgrounds impacting this search. The contributions from both the internal and external airborne radon have been evaluated. The internal \Rn{222} activity is found to be (0.950.04(stat)0.09(sys)) Bq/m, while no traces of \Rn{220} have been observed. Most of the \Rn{222} progeny plate-out on the surface of the cathode of the detector, leading to a rate of Rn-induced \Bi{214} of (0.970.05(stat)0.10(sys)) Hz for visible energies above 400 keV. The corresponding background index in the \bbnonu region of interest is evaluated as (7.31.5(stat)0.8(sys)) counts/(keVkgyr) after selection of the fully contained events. This background index is reduced to 4 counts/(keVkgyr) by applying a topological selection requiring only one double-electron-like track in the events. This value is one order of magnitude below the total radiogenic background expectation in NEXT-100. By analyzing the correlation of the airborne radon activity and the measured rate of events in NEXT-100, it is concluded that the detector operates in a virtualy radon-free environment thanks to the radon abatement system of the LSC.
Cite
@article{arxiv.2604.19616,
title = {Radon-induced backgrounds in the NEXT-100 experiment},
author = {NEXT Collaboration and C. Cortes-Parra and P. Novella and G. Martínez-Lema and H. Almazán and V. Álvarez and L. Arazi and I. J. Arnquist and F. Auria-Luna and S. Ayet and Y. Ayyad and C. D. R. Azevedo and F. Ballester and J. E. Barcelon and M. del Barrio-Torregrosa and J. M. Benlloch-Rodríguez and F. I. G. M. Borges and A. Brodoline and N. Byrnes and A. Castillo and E. Church and M. Cid and X. Cid and C. A. N. Conde and F. P. Cossío and R. Coupe and E. Dey and P. Dietz and C. Echeverria and M. Elorza and R. Esteve and R. Felkai and L. M. P. Fernandes and P. Ferrario and P. Ferrero Mancheño and F. W. Foss and Z. Freixa and J. García-Barrena and J. J. Gómez-Cadenas and J. W. R. Grocott and R. Guenette and J. Hauptman and C. A. O. Henriques and J. A. Hernando Morata and P. Herrero-Gómez and V. Herrero and C. Hervés Carrete and Y. Ifergan and A. F. B. Isabel and B. J. P. Jones and F. Kellerer and L. Larizgoitia and A. Larumbe and P. Lebrun and F. Lopez and N. López-March and R. Madigan and R. D. P. Mano and A. Marauri and A. P. Marques and J. Martín-Albo and A. Martínez and M. Martínez-Vara and R. L. Miller and K. Mistry and J. Molina-Canteras and F. Monrabal and C. M. B. Monteiro and F. J. Mora and K. E. Navarro and D. R. Nygren and E. Oblak and I. Osborne and J. Palacio and B. Palmeiro and A. Para and I. Parmaksiz and A. Pazos and J. Pelegrin and M. Pérez Maneiro and M. Querol and J. Renner and I. Rivilla and C. Rogero and L. Rogers and B. Romeo and C. Romo-Luque and E. Ruiz-Chóliz and P. Saharia and F. P. Santos and J. M. F. dos Santos and M. Seemann and I. Shomroni and A. L. M. Silva and P. A. O. C. Silva and A. Simón and S. R. Soleti and M. Sorel and J. Soto-Oton and J. M. R. Teixeira and S. Teruel-Pardo and J. F. Toledo and C. Tonnelé and S. Torelli and J. Torrent and A. Trettin and P. R. G. Valle and M. Vanga and P. Vázquez Cabaleiro and J. F. C. A. Veloso and J. D. Villamil and L. M. Villar Padruno and J. Waiton and A. Yubero-Navarro},
journal= {arXiv preprint arXiv:2604.19616},
year = {2026}
}
Comments
21 pages, 13 figures