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Towards a new generation of solid total-energy detectors for neutron-capture time-of-flight experiments with intense neutron beams

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arxiv 2411.18969 v1 pith:RILHLLVT submitted 2024-11-28 physics.ins-det nucl-ex

Towards a new generation of solid total-energy detectors for neutron-capture time-of-flight experiments with intense neutron beams

J. Balibrea-Correa , V. Babiano-Suarez , J. Lerendegui-Marco , C. Domingo-Pardo , I. Ladarescu , A. Tarife\~no-Saldivia , G. de la Fuente-Rosales , B. Gameiro
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N. Zaitseva V. Alcayne D. Cano-Ott E. Gonz\'alez-Romero T. Mart\'inez E. Mendoza A. P\'erez de Rada J. Plaza del Olmo A. S\'anchez-Caballero A. Casanovas F. Calvi\~no S. Valenta O. Aberle S. Altieri S. Amaducci J. Andrzejewski M. Bacak C. Beltrami S. Bennett A. P. Bernardes E. Berthoumieux R. Beyer M. Boromiza D. Bosnar M. Caama\~no M. Calviani D. M. Castelluccio F. Cerutti G. Cescutti S. Chasapoglou E. Chiaveri P. Colombetti N. Colonna P. Console Camprini G. Cort\'es M. A. Cort\'es-Giraldo L. Cosentino S. Cristallo S. Dellmann M. Di Castro S. Di Maria M. Diakaki M. Dietz R. Dressler E. Dupont I. Dur\'an Z. Eleme S. Fargier B. Fern\'andez B. Fern\'andez-Dom\'inguez P. Finocchiaro S. Fiore V. Furman F. Garc\'ia-Infantes A. Gawlik-Ramikega G. Gervino S. Gilardoni C. Guerrero F. Gunsing C. Gustavino J. Heyse W. Hillman D. G. Jenkins E. Jericha A. Junghans Y. Kadi K. Kaperoni G. Kaur A. Kimura I. Knapov\'a M. Kokkoris Y. Kopatch M. Krt\`ivcka N. Kyritsis C. Lederer-Woods G. Lerner A. Manna A. Masi C. Massimi P. Mastinu M. Mastromarco E. A. Maugeri A. Mazzone A. Mengoni V. Michalopoulou P. M. Milazzo R. Mucciola F. Murtas E. Musacchio-Gonzalez A. Musumarra A. Negret P. P\'erez-Maroto N. Patronis J. A. Pav\'on-Rodr\'iguez M. G. Pellegriti J. Perkowski C. Petrone E. Pirovano S. Pomp I. Porras J. Praena J. M. Quesada R. Reifarth D. Rochman Y. Romanets C. Rubbia M. Sabat\'e-Gilarte P. Schillebeeckx D. Schumann A. Sekhar A. G. Smith N. V. Sosnin M. E. Stamati A. Sturniolo G. Tagliente D. Tarr\'io P. Torres-S\'anchez E. Vagena V. Variale P. Vaz G. Vecchio D. Vescovi V. Vlachoudis R. Vlastou A. Wallner P. J. Woods T. Wright R. Zarrella P. Zugec
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classification physics.ins-det nucl-ex
keywords detectorarraydetectiongammaperformancestarcarlodetectors
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Challenging neutron-capture cross-section measurements of small cross sections and samples with a very limited number of atoms require high-flux time-of-flight facilities. In turn, such facilities need innovative detection setups that are fast, have low sensitivity to neutrons, can quickly recover from the so-called $\gamma$-flash, and offer the highest possible detection sensitivity. In this paper, we present several steps toward such advanced systems. Specifically, we describe the performance of a high-sensitivity experimental setup at CERN n\_TOF EAR2. It consists of nine sTED detector modules in a compact cylindrical configuration, two conventional used large-volume C$_{6}$D$_{6}$ detectors, and one LaCl$_{3}$(Ce) detector. The performance of these detection systems is compared using $^{93}$Nb($n$,$\gamma$) data. We also developed a detailed \textsc{Geant4} Monte Carlo model of the experimental EAR2 setup, which allows for a better understanding of the detector features, including their efficiency determination. This Monte Carlo model has been used for further optimization, thus leading to a new conceptual design of a $\gamma$ detector array, STAR, based on a deuterated-stilbene crystal array. Finally, the suitability of deuterated-stilbene crystals for the future STAR array is investigaged experimentally utilizing a small stilbene-d12 prototype. The results suggest a similar or superior performance of STAR with respect to other setups based on liquid-scintillators, and allow for additional features such as neutron-gamma discrimination and a higher level of customization capability.

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