PAPER / ARXIV:2609.12973
J. Waiton , H. Almazán , B. Palmeiro , G. Martínez-Lema , R. Guenette , V. Álvarez , L. Arazi , I.J. Arnquist , F. Auria-Luna , S. Ayet , Y. Ayyad , C.D.R. Azevedo , F. Ballester , J.E. Barcelon , M. del Barrio-Torregrosa , J.M. Benlloch-Rodríguez , F.I.G.M. Borges , A. Brodoline , C. Cabo , A. Castillo , E. Church , M. Cid , X. Cid , C.A.N. Conde , C. Cortes-Parra , F.P. Cossío , R. Coupe , E. Dey , P. Dietz , C. Echeverria , M. Elorza , R. Esteve , R. Felkai , L.M.P. Fernandes , P. Ferrario , P. Ferrero Mancheño , F.W. Foss , Z. Freixa , J. García-Barrena , J.J. Gómez-Cadenas , J.W.R. Grocott , J. Hauptman , C.A.O. Henriques , J.A. Hernando Morata , P. Herrero-Gómez , V. Herrero , C. Hervés Carrete , Y. Ifergan , A.F.B. Isabel , B.J.P. Jones , F. Kellerer , L. Larizgoitia , A. Larumbe , P. Lebrun , F. Lopez , N. López-March , R. Madigan , R.D.P. Mano , A. Marauri , A.P. Marques , J. Martín-Albo , A. Martínez , M. Martínez-Vara , R.L. Miller , K. Mistry , J. Molina-Canteras , F. Monrabal , C.M.B. Monteiro , F.J. Mora , K.E. Navarro , P. Novella , D.R. Nygren , E. Oblak , I. Osborne , J. Palacio , A. Para , A. Pazos , J. Pelegrin , M. Pérez Maneiro , M. Querol , J. Renner , I. Rivilla , C. Rogero , L. Rogers , B. Romeo , C. Romo-Luque , E. Ruiz-Chóliz , P. Saharia , F.P. Santos , J.M.F. dos Santos , M. Seemann , I. Shomroni , A.L.M. Silva , P.A.O.C. Silva , A. Simón , S.R. Soleti , M. Sorel , J. Soto-Oton , J.M.R. Teixeira , S. Teruel-Pardo
RESUMO
The NEXT-100 detector is a high-pressure xenon time projection chamber utilising electroluminescence amplification for sub-1% FWHM energy resolution and topological discrimination, two key attributes required to achieve the NEXT programme's overarching goal of detecting neutrinoless double beta decay ($0 \nu \beta \beta$). The detector has completed its first physics run at the Laboratorio Subterráneo de Canfranc (LSC), with xenon at a pressure of $\sim$4 bar. In this paper we report on the first validation of NEXT-100's topological performance and present the first topological analysis conducted at low pressure within the detector programme. A Monte Carlo study characterising the effects of pressure on track topology is presented, with qualitative agreement observed in data. We then demonstrate the topological discrimination capabilities for $0\nu \beta \beta$-like events from $^{208}$Tl decays using a cut-based method considered the 'baseline' in NEXT's topological programme, upon which all future analyses will improve. The analysis described applies a set of selection cuts before implementing a background discrimination algorithm that yields a reported signal efficiency for double-electron tracks and background acceptance for single-electron tracks of 75.6 $\pm$ 1.9 (stat.) $^{+3.4}_{-4.1}$ (syst.) % and 14.7 $\pm$ 0.4 (stat.) $^{+0.7}_{-0.8}$ (syst.) %. These results demonstrate the excellent topological discrimination capabilities of the NEXT-100 detector in line with NEXT-White, which achieved a signal efficiency and background acceptance of 71.6 $\pm$ 1.5 (stat.) $\pm$ 0.3 (syst.) % and 20.6 $\pm$ 0.4 (stat.) $\pm$ 0.3 (syst.) % respectively.
NO MESMO MAPA