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Initial results on energy resolution of the NEXT-White detector

Authors :
L. Labarga
J. S. Díaz
P. Novella
N. Yahlali
J. Martín-Albo
J.J. Gómez-Cadenas
F. Ballester
G. Martínez-Lema
Romain Esteve
S. Cebrián
Jose Repond
R. C. Webb
Sandra K. Johnston
Paola Ferrario
L. Rogers
J.V. Carrión
R. Guenette
N. López-March
M. Losada
J.F. Toledo
S. Cárcel
C. Sofka
P. Lebrun
R.D.P. Mano
A. Martínez
F.P. Santos
Jose A. Rodriguez
Kevin Bailey
A.D. McDonald
J.M. Benlloch-Rodríguez
M. Kekic
J.A. Hernando Morata
C. Romo-Luque
C.M.B. Monteiro
J.F.C.A. Veloso
E.D.C. Freitas
J. Muñoz Vidal
Víctor H. Alvarez
A.I. Hernandez
F. Psihas
Diego González-Díaz
A. Laing
F.J. Mora
T.M. Stiegler
B. Palmeiro
Lior Arazi
C.A.O. Henriques
R. Felkai
C.D.R. Azevedo
M. Diesburg
F.I.G.M. Borges
A. Botas
S. Riordan
A. Para
J. Escada
M. Sorel
L.M.P. Fernandes
F. Monrabal
D.R. Nygren
A.L. Ferreira
K. Hafidi
V. Herrero
M. Nebot-Guinot
A. Goldschmidt
J. Hauptman
J.M.F. dos Santos
C.A.N. Conde
Javier Pérez
A. Simón
J. Renner
M. Musti
L. Ripoll
B. J. P. Jones
J. Torrent
J. Generowicz
Roberto Gutiérrez
M. Querol
C. Adams
A.F.M. Fernandes
J.T. White
Source :
Journal of Instrumentation, vol 13, iss 10, Journal of Instrumentation
Publication Year :
2018
Publisher :
eScholarship, University of California, 2018.

Abstract

One of the major goals of the NEXT-White (NEW) detector is to demonstrate the energy resolution that an electroluminescent high pressure xenon TPC can achieve for high energy tracks. For this purpose, energy calibrations with 137Cs and 232Th sources have been carried out as a part of the long run taken with the detector during most of 2017. This paper describes the initial results obtained with those calibrations, showing excellent linearity and an energy resolution that extrapolates to approximately 1% FWHM at Q$_{\beta\beta}$.<br />Comment: 14 pages, 8 figures, Accepted for publication in JINST

Details

ISSN :
17480221
Database :
OpenAIRE
Journal :
Journal of Instrumentation, vol 13, iss 10, Journal of Instrumentation
Accession number :
edsair.doi.dedup.....c27690492c83f17ff5dd7f7acd412228