J.M. Benlloch-Rodríguez
Spanish National Research Council
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Publication
Featured researches published by J.M. Benlloch-Rodríguez.
Journal of Instrumentation | 2017
J. Renner; A. Farbin; J. Muñoz Vidal; J.M. Benlloch-Rodríguez; A. Botas; P. Ferrario; J.J. Gómez-Cadenas; V. Álvarez; C.D.R. Azevedo; F.I.G.M. Borges; S. Cárcel; J.V. Carrión; S. Cebrián; A Cervera; C.A.N. Conde; J. Díaz; M. Diesburg; R. Esteve; L.M.P. Fernandes; A. L. Ferreira; E.D.C. Freitas; A. Goldschmidt; D. González-Díaz; R.M. Gutiérrez; J. M. Hauptman; C.A.O. Henriques; J. A. Hernando Morata; V. Herrero; B.J.P. Jones; L. Labarga
We investigate the potential of using deep learning techniques to reject background events in searches for neutrinoless double beta decay with high pressure xenon time projection chambers capable of detailed track reconstruction. The differences in the topological signatures of background and signal events can be learned by deep neural networks via training over many thousands of events. These networks can then be used to classify further events as signal or background, providing an additional background rejection factor at an acceptable loss of efficiency. The networks trained in this study performed better than previous methods developed based on the use of the same topological signatures by a factor of 1.2 to 1.6, and there is potential for further improvement.
Journal of Instrumentation | 2017
A. Simón; J.J. Gómez-Cadenas; G. Martínez-Lema; A. Martínez; R. Felkai; J.F. Toledo; V. Álvarez; T. Stiegler; R. Esteve; J.M.F. dos Santos; S. Cebrián; C.M.B. Monteiro; F.P. Santos; E.D.C. Freitas; C.A.N. Conde; A. Laing; L. Ripoll; P. Novella; S. Cárcel; B.J.P. Jones; A. L. Ferreira; P. Lebrun; F.J. Mora; F. Monrabal; A. Goldschmidt; N. López-March; C.W. Lerche; J.V. Carrión; J. Muñoz Vidal; P. Ferrario
The goal of the NEXT experiment is the observation of neutrinoless double beta decay in 136Xe using a gaseous xenon TPC with electroluminescent amplification and specialized photodetector arrays for calorimetry and tracking. The NEXT Collaboration is exploring a number of reconstruction algorithms to exploit the full potential of the detector. This paper describes one of them: the Maximum Likelihood Expectation Maximization (ML-EM) method, a generic iterative algorithm to find maximum-likelihood estimates of parameters that has been applied to solve many different types of complex inverse problems. In particular, we discuss a bi-dimensional version of the method in which the photosensor signals integrated over time are used to reconstruct a transverse projection of the event. First results show that, when applied to detector simulation data, the algorithm achieves nearly optimal energy resolution (better than 0.5% FWHM at the Q value of 136Xe) for events distributed over the full active volume of the TPC.
Physical Review Letters | 2018
A.D. McDonald; B.J.P. Jones; D.R. Nygren; C. Adams; V. Álvarez; C.D.R. Azevedo; J.M. Benlloch-Rodríguez; F.I.G.M. Borges; A. Botas; S. Cárcel; J.V. Carrión; S. Cebrián; C.A.N. Conde; J. Díaz; M. Diesburg; J. Escada; R. Esteve; R. Felkai; L.M.P. Fernandes; P. Ferrario; A. L. Ferreira; E.D.C. Freitas; A. Goldschmidt; J.J. Gómez-Cadenas; D. González-Díaz; R.M. Gutiérrez; R. Guenette; K. Hafidi; J. M. Hauptman; C.A.O. Henriques
A new method to tag the barium daughter in the double-beta decay of ^{136}Xe is reported. Using the technique of single molecule fluorescent imaging (SMFI), individual barium dication (Ba^{++}) resolution at a transparent scanning surface is demonstrated. A single-step photobleach confirms the single ion interpretation. Individual ions are localized with superresolution (∼2 nm), and detected with a statistical significance of 12.9σ over backgrounds. This lays the foundation for a new and potentially background-free neutrinoless double-beta decay technology, based on SMFI coupled to high pressure xenon gas time projection chambers.
Journal of Instrumentation | 2016
J.J. Gómez-Cadenas; J.M. Benlloch-Rodríguez; P. Ferrario; F. Monrabal; J. Rodríguez; J.F. Toledo
The measurement of the time of flight of the two 511 keV gammas recorded in coincidence in a PET scanner provides an effective way of reducing the random background and therefore increases the scanner sensitivity, provided that the coincidence resolving time (CRT) of the gammas is sufficiently good. The best commercial PET-TOF system today (based in LYSO crystals and digital SiPMs), is the VEREOS of Philips, boasting a CRT of 316 ps (FWHM). In this paper we present a Monte Carlo investigation of the CRT performance of a PET scanner exploiting the scintillating properties of liquid xenon. We find that an excellent CRT of 70 ps (depending on the PDE of the sensor) can be obtained if the scanner is instrumented with silicon photomultipliers (SiPMs) sensitive to the ultraviolet light emitted by xenon. Alternatively, a CRT of 160 ps can be obtained instrumenting the scanner with (much cheaper) blue-sensitive SiPMs coated with a suitable wavelength shifter. These results show the excellent time of flight capabilities of a PET device based in liquid xenon.
Physics Letters B | 2017
C.A.O. Henriques; E.D.C. Freitas; C.D.R. Azevedo; D. González-Díaz; R.D.P. Mano; M. R. Jorge; L.M.P. Fernandes; C.M.B. Monteiro; J.J. Gómez-Cadenas; V. Álvarez; J.M. Benlloch-Rodríguez; F.I.G.M. Borges; A. Botas; S. Cárcel; J.V. Carrión; S. Cebrián; C.A.N. Conde; J. Díaz; M. Diesburg; R. Esteve; R. Felkai; P. Ferrario; A. L. Ferreira; A. Goldschmidt; R.M. Gutiérrez; J. M. Hauptman; A.I. Hernandez; J. A. Hernando Morata; V. Herrero; B.J.P. Jones
Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2018
C.D.R. Azevedo; D. González-Díaz; S.F. Biagi; C A B Oliveira; C.A.O. Henriques; J. Escada; F. Monrabal; J.J. Gómez-Cadenas; V. Álvarez; J.M. Benlloch-Rodríguez; F.I.G.M. Borges; A. Botas; S. Cárcel; J.V. Carrión; S. Cebrián; C.A.N. Conde; J. Díaz; M. Diesburg; R. Esteve; R. Felkai; L.M.P. Fernandes; P. Ferrario; A. L. Ferreira; E.D.C. Freitas; A. Goldschmidt; R.M. Gutiérrez; J. M. Hauptman; A.I. Hernandez; J. A. Hernando Morata; V. Herrero
Journal of Instrumentation | 2018
G. Martínez-Lema; J. A. Hernando Morata; B. Palmeiro; A. Botas; P. Ferrario; F. Monrabal; A. Laing; J. Renner; A. Simón; A. Para; J.J. Gómez-Cadenas; C. Adams; V. Álvarez; L. Arazi; C.D.R. Azevedo; K. Bailey; F. Ballester; J.M. Benlloch-Rodríguez; F.I.G.M. Borges; S. Cárcel; J.V. Carrión; S. Cebrián; C.A.N. Conde; J. Díaz; M. Diesburg; J. Escada; R. Esteve; R. Felkai; A.F.M. Fernandes; L.M.P. Fernandes
Journal of Instrumentation | 2018
A. Simón; R. Felkai; G. Martínez-Lema; F. Monrabal; D. González-Díaz; M. Sorel; J. A. Hernando Morata; J.J. Gómez-Cadenas; C. Adams; V. Álvarez; L. Arazi; C. D. R. Azevedo; K. Bailey; F. Ballester; J.M. Benlloch-Rodríguez; F.I.G.M. Borges; A. Botas; S. Cárcel; J.V. Carrión; S. Cebrián; C.A.N. Conde; J. Díaz; M. Diesburg; J. Escada; R. Esteve; L.M.P. Fernandes; P. Ferrario; A. L. Ferreira; E.D.C. Freitas; J. Generowicz
arXiv: Instrumentation and Detectors | 2018
C.A.O. Henriques; C.M.B. Monteiro; D. González-Díaz; C. D. R. Azevedo; E.D.C. Freitas; R.D.P. Mano; M. R. Jorge; A.F.M. Fernandes; L.M.P. Fernandes; J.J. Gómez-Cadenas; V. Álvarez; J.M. Benlloch-Rodríguez; F.I.G.M. Borges; A. Botas; S. Cárcel; J.V. Carrión; S. Cebrián; C.A.N. Conde; J. Díaz; M. Diesburg; J. Escada; R. Esteve; R. Felkai; P. Ferrario; A. L. Ferreira; A. Goldschmidt; R.M. Gutiérrez; J. M. Hauptman; A.I. Hernandez; J. A. Hernando Morata
arXiv: Instrumentation and Detectors | 2018
F. Monrabal; J.J. Gómez-Cadenas; J.F. Toledo; V. Álvarez; J.M. Benlloch-Rodríguez; S. Cárcel; J.V. Carrión; R. Esteve; R. Felkai; V. Herrero; A. Laing; A. Martínez; M. Musti; M. Querol; J. Rodríguez; A. Simón; C. Sofka; J. Torrent; R. Webb; J. T. White; C. Adams; L. Arazi; C. D. R. Azevedo; K. Bailey; F. Ballester; F.I.G.M. Borges; A. Botas; S. Cebrián; C.A.N. Conde; J. Díaz