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

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 f...

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Authors: Balibrea Correa, Javier, Babiano Suárez, Víctor, Lerendegui Marco, Jorge, Domingo Pardo, César, Ladarescu, Ion, Tarifeño Saldivia, Ariel Esteban|||0000-0001-8552-5030, Fuente Rosales, Gabriel de la, Gameiro, Bernardo, Zaitseva, Natalia P., Alcayne Aicua, Víctor, Cano Ott, Daniel, González Romero, Enrique Miguel, Casanovas Hoste, Adrià|||0000-0002-7138-0894, Calviño Tavares, Francisco|||0000-0002-7198-4639, Cortés Rossell, Guillem Pere|||0000-0002-3648-5826
Format: article
Publication Date:2025
Country:España
Institution:Universitat Politècnica de Catalunya (UPC)
Repository:UPCommons. Portal del coneixement obert de la UPC
Language:English
OAI Identifier:oai:upcommons.upc.edu:2117/429762
Online Access:https://hdl.handle.net/2117/429762
https://dx.doi.org/10.1016/j.nima.2024.170110
Access Level:Open access
Keyword:Neutron capture
¿-ray detectors
High sensitivity
Hybrid setup
Stilbene-d12
Àrees temàtiques de la UPC::Física
Description
Summary: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 -flash, and offer the highest possible detection sensitivity. In this paper, we present several steps towards 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 C6D6 detectors, and one LaCl3(Ce) detector. The performance of these detection systems is compared using 93Nb(, ) data. We also developed a detailed 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 detector array, STAR, based on a deuterated-stilbene crystal array. Finally, the suitability of deuterated-stilbene crystals for the future STAR array is investigated 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. Previous article in issue Next article in issue