J
J. Torrent
Researcher at Donostia International Physics Center
Publications - 95
Citations - 2446
J. Torrent is an academic researcher from Donostia International Physics Center. The author has contributed to research in topics: Xenon & Double beta decay. The author has an hindex of 27, co-authored 87 publications receiving 2117 citations. Previous affiliations of J. Torrent include Spanish National Research Council & University of Girona.
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Journal ArticleDOI
Sensitivity of NEXT-100 to neutrinoless double beta decay
J. Martín-Albo,J. Martín-Albo,J. Muñoz Vidal,Paola Ferrario,M. Nebot-Guinot,J.J. Gómez-Cadenas,Víctor H. Alvarez,C.D.R. Azevedo,F.I.G.M. Borges,S. Cárcel,J.V. Carrión,S. Cebrián,A. Cervera,C.A.N. Conde,J. S. Díaz,M. Diesburg,Romain Esteve,L.M.P. Fernandes,A.L. Ferreira,E.D.C. Freitas,A. Goldschmidt,D. González-Díaz,Roberto Gutiérrez,J. Hauptman,C.A.O. Henriques,J.A. Hernando Morata,V. Herrero,L. Labarga,A. Laing,P. Lebrun,I. Liubarsky,N. López-March,D. Lorca,M. Losada,G. Martínez-Lema,A. Martínez,F. Monrabal,C.M.B. Monteiro,F.J. Mora,L.M. Moutinho,P. Novella,D.R. Nygren,B. Palmeiro,A. Para,M. Querol,J. Renner,L. Ripoll,Javier Rodríguez,F.P. Santos,J.M.F. dos Santos,Luis M. Serra,D. Shuman,A. Simón,C. Sofka,M. Sorel,T.M. Stiegler,J.F. Toledo,J. Torrent,Z. Tsamalaidze,J.F.C.A. Veloso,R. C. Webb,J.T. White,N. Yahlali,H. Yepes-Ramírez +63 more
TL;DR: NEXT-100 as mentioned in this paper is an electroluminescent high-pressure xenon gas time projection chamber that will search for the neutrinoless double beta (0νββ) decay of 136Xe.
Journal ArticleDOI
First proof of topological signature in the high pressure xenon gas TPC with electroluminescence amplification for the NEXT experiment
Paola Ferrario,A. Laing,N. López-March,J.J. Gómez-Cadenas,Víctor H. Alvarez,C.D.R. Azevedo,F.I.G.M. Borges,S. Cárcel,S. Cebrián,A. Cervera,C.A.N. Conde,T. Dafni,J. S. Díaz,M. Diesburg,Romain Esteve,L.M.P. Fernandes,A.L. Ferreira,E.D.C. Freitas,V. M. Gehman,A. Goldschmidt,D. González-Díaz,Roberto Gutiérrez,J. Hauptman,C.A.O. Henriques,J.A. Hernando Morata,I. G. Irastorza,Luis Labarga,P. Lebrun,I. Liubarsky,D. Lorca,Marta Losada,G. Luzón,A. Marí,J. Martín-Albo,G. Martínez-Lema,A. Martínez,T. Miller,F. Monrabal,M. Monserrate,C.M.B. Monteiro,F.J. Mora,L.M. Moutinho,J. Muñoz Vidal,M. Nebot-Guinot,P. Novella,D. R. Nygren,A. Para,Javier Pérez,J.L. Pérez Aparicio,M. Querol,J. Renner,L. Ripoll,Jorge Luis Rodriguez,F.P. Santos,J.M.F. dos Santos,Luis M. Serra,D. Shuman,A. Simón,C. Sofka,M. Sorel,J.F. Toledo,J. Torrent,Zviad Tsamalaidze,J.F.C.A. Veloso,J.A. Villar,R. C. Webb,J.T. White,N. Yahlali,H. Yepes-Ramírez +68 more
TL;DR: In this article, the authors presented the first demonstration that the topology provided extra handles to reject background events using data obtained with the NEXT-DEMO prototype, which was used to develop algorithms for the reconstruction of tracks and the identification of the energy deposited at the end-points.
Journal ArticleDOI
NEXT-100 Technical Design Report (TDR). Executive summary
Víctor H. Alvarez,F.I.G.M. Borges,S. Cárcel,J. M. Carmona,J. F. Castel,J. M. Catalá,S. Cebrián,A. Cervera,D. Chan,C.A.N. Conde,T. Dafni,T.H.V.T. Dias,J. S. Díaz,M. Egorov,Romain Esteve,P Evtoukhovitch,L.M.P. Fernandes,Paola Ferrario,A.L. Ferreira,E. Ferrer-Ribas,E.D.C. Freitas,V. M. Gehman,Ana M. Gil,Ioannis Giomataris,A. Goldschmidt,Hector Gomez,J.J. Gómez-Cadenas,K. González,Diego González-Díaz,Roberto Gutiérrez,J. Hauptman,J. A. Hernando Morata,D.C. Herrera,V. Herrero,F.J. Iguaz,I. G. Irastorza,V. Kalinnikov,D. Kiang,L. Labarga,I. Liubarsky,J. A. M. Lopes,D. Lorca,Marta Losada,G. Luzón,A. Marí,J. Martín-Albo,A. Martínez,T. Miller,A. Moiseenko,F. Monrabal,C.M.B. Monteiro,J M Monzó,F J Mora,L.M. Moutinho,J. Muñoz Vidal,H. Natal da Luz,Gabriela Navarro,M. Nebot,Dave Nygren,Carlos R. Oliveira,Carlos R. Oliveira,Roberto Palma,Javier Pérez,J.L. Pérez Aparicio,J Renner,L. Ripoll,A Rodríguez,J. Rodriguez,F.P. Santos,J.M.F. dos Santos,L. Segui,Luis M. Serra,D. Shuman,C. Sofka,M. Sorel,J.F. Toledo,A. Tomás,J. Torrent,Zviad Tsamalaidze,D Vázquez,E. Velicheva,J.F.C.A. Veloso,José Villar,R. C. Webb,Taisy Silva Weber,J. T. White,N. Yahlali +86 more
TL;DR: The Next-100 detector as discussed by the authors was designed to search for neutrinoless double beta decay (ββ0ν) in 136XE at the Laboratorio Subterraneo de Canfranc (LSC) in Spain.
Journal ArticleDOI
Sensitivity of NEXT-100 to neutrinoless double beta decay
J. Martín-Albo,J. Muñoz Vidal,Paola Ferrario,M. Nebot-Guinot,J.J. Gómez-Cadenas,Víctor H. Alvarez,C.D.R. Azevedo,F.I.G.M. Borges,S. Cárcel,S. Cebrián,A. Cervera,C.A.N. Conde,J. S. Díaz,M. Diesburg,Romain Esteve,L.M.P. Fernandes,A.L. Ferreira,E.D.C. Freitas,A. Goldschmidt,D. González-Díaz,Roberto Gutiérrez,J. Hauptman,C.A.O. Henriques,J.A. Hernando Morata,L. Labarga,A. Laing,P. Lebrun,I. Liubarsky,N. López-March,D. Lorca,M. Losada,G. Martínez-Lema,A. Martínez,F. Monrabal,C.M.B. Monteiro,F.J. Mora,L.M. Moutinho,P. Novella,D.R. Nygren,B. Palmeiro,A. Para,Javier Pérez,M. Querol,J. Renner,L. Ripoll,Jorge Luis Rodriguez,F.P. Santos,J.M.F. dos Santos,Luis M. Serra,D. Shuman,A. Simón,C. Sofka,M. Sorel,T.M. Stiegler,J.F. Toledo,J. Torrent,Z. Tsamalaidze,J.F.C.A. Veloso,R. C. Webb,J.T. White,N. Yahlali,H. Yepes-Ramírez +61 more
TL;DR: NEXT-100 as discussed by the authors is an electroluminescent high-pressure xenon gas time projection chamber that will search for the neutrinoless double beta ($β \beta 0
u$) decay of Xe-136.
Journal ArticleDOI
Near-intrinsic energy resolution for 30–662 keV gamma rays in a high pressure xenon electroluminescent TPC
Víctor H. Alvarez,F.I.G.M. Borges,S. Cárcel,J. F. Castel,S. Cebrián,A. Cervera,C.A.N. Conde,T. Dafni,T.H.V.T. Dias,J. S. Díaz,M. Egorov,Romain Esteve,Petr Evtoukhovitch,L.M.P. Fernandes,Paola Ferrario,A.L. Ferreira,E.D.C. Freitas,V. M. Gehman,Ana M. Gil,A. Goldschmidt,Hector Gomez,J.J. Gómez-Cadenas,Diego González-Díaz,Roberto Gutiérrez,J. M. Hauptman,J. A. Hernando Morata,D.C. Herrera,F.J. Iguaz,I. G. Irastorza,M A Jinete,L. Labarga,I. Liubarsky,J. A. M. Lopes,D. Lorca,M. Losada,G. Luzón,A. Marí,J. Martín-Albo,Ana Martínez,T. Miller,A. Moiseenko,F. Monrabal,C.M.B. Monteiro,F.J. Mora,L.M. Moutinho,J. Muñoz Vidal,H. Natal da Luz,Gabriela Navarro,M. Nebot-Guinot,D. R. Nygren,Carlos R. Oliveira,Roberto Palma,Javier Pérez,J.L. Pérez Aparicio,J Renner,L. Ripoll,A Rodríguez,Javier Rodríguez,F.P. Santos,J.M.F. dos Santos,L. Segui,Luis M. Serra,D. Shuman,A. Simón,C. Sofka,M. Sorel,J.F. Toledo,A. Tomás,J. Torrent,Z. Tsamalaidze,D Vázquez,J.F.C.A. Veloso,José Villar,R. C. Webb,J. T. White,N. Yahlali +75 more
TL;DR: The Next prototype for Double Beta and Dark Matter (NEXT-DBDM) detector was built at the Lawrence Berkeley National Laboratory (LBNL) and achieved energy resolution of ∼ 1% FWHM for 662 keV gamma rays at 10 and 15 atm and ∼ 5% FWCM for 30 keV fluorescence xenon X-rays as discussed by the authors.