CERN Accelerating science

Article
Title A segmented total energy detector (sTED) for (n, γ) cross section measurements at n_TOF EAR2
Author(s)

Alcayne, V (Madrid, CIEMAT) ; Cano-Ott, D (Madrid, CIEMAT) ; Garcia, J (Madrid, CIEMAT) ; González-Romero, E (Madrid, CIEMAT) ; Martínez, T (Madrid, CIEMAT) ; Mendoza, E (Madrid, CIEMAT) ; Sánchez, A (Madrid, CIEMAT) ; Plaza, J (Madrid, CIEMAT) ; Balibrea-Correa, J (Valencia U., IFIC) ; Casanovas, A (Valencia U., IFIC) ; Domingo-Pardo, C (Valencia U., IFIC) ; Lerendegui-Marco, J (Valencia U., IFIC) ; Aberle, O (Valencia U., IFIC) ; Altieri, S (CERN ; INFN, Pavia) ; Amaducci, S (Pavia U.) ; Es-Sghir, H Amar (INFN, Catania) ; Andrzejewski, J (Granada U.) ; Babiano-Suarez, V (Lodz U.) ; Bacak, M (Valencia U., IFIC) ; Balibrea, J (Lodz U.) ; Bennett, S (Manchester U.) ; Bernardes, A P (Valencia U., IFIC) ; Berthoumieux, E (IRFU, Saclay) ; Bosnar, D (Zagreb U., Phys. Dept.) ; Busso, M (INFN, Perugia ; U. Perugia (main)) ; Caamaño, M (Santiago de Compostela U.) ; Calviño, F (Barcelona, Polytechnic U.) ; Calviani, M (Valencia U., IFIC) ; Casanovas, A (Lodz U.) ; Castelluccio, D M (ENEA, Casaccia ; INFN, Bologna) ; Cerutti, F (Valencia U., IFIC) ; Cescutti, G (INFN, Trieste ; Trieste U.) ; Chasapoglou, S (Natl. Tech. U., Athens) ; Chiaveri, E (Valencia U., IFIC ; Manchester U.) ; Colombetti, P (INFN, Turin ; Turin U.) ; Colonna, N (INFN, Bari) ; Camprini, P C Console (ENEA, Casaccia ; INFN, Bologna) ; Cortés, G (Barcelona, Polytechnic U.) ; Cortés-Giraldo, M A (Seville U.) ; Cosentino, L (Pavia U.) ; Cristallo, S (INFN, Perugia ; Cagliari Observ.) ; Di Castro, M (Valencia U., IFIC) ; Diacono, D (INFN, Bari) ; Diakaki, M (Natl. Tech. U., Athens) ; Dietz, M (Braunschweig, Phys. Tech. Bund.) ; Domingo-Pardo, C (Lodz U.) ; Dressler, R (PSI, Villigen) ; Dupont, E (IRFU, Saclay) ; Durán, I (Santiago de Compostela U.) ; Eleme, Z (Ioannina U.) ; Fargier, S (Valencia U., IFIC) ; Fernández-Domínguez, B (Santiago de Compostela U.) ; Finocchiaro, P (Pavia U.) ; Fiore, S (ENEA, Casaccia ; INFN, Rome) ; Furman, V (Dubna, JINR) ; García-Infantes, F (INFN, Catania) ; Gawlik-Ramiega, A (Granada U.) ; Gervino, G (INFN, Turin ; Turin U.) ; Gilardoni, S (Valencia U., IFIC) ; Guerrero, C (Seville U.) ; Gunsing, F (IRFU, Saclay) ; Gustavino, C (INFN, Rome) ; Heyse, J (Geel, JRC) ; Jenkins, D G (York U., England) ; Jericha, E (Vienna, Tech. U., Atominst.) ; Junghans, A (HZDR, Dresden) ; Kadi, Y (Valencia U., IFIC) ; Katabuchi, T (Tokyo Inst. Tech.) ; Knapová, I (Charles U.) ; Kokkoris, M (Natl. Tech. U., Athens) ; Kopatch, Y (Dubna, JINR) ; ˇ, M Krticka (Charles U.) ; Kurtulgil, D (Goethe U., Frankfurt (main)) ; Ladarescu, I (Lodz U.) ; Lederer-Woods, C (Edinburgh U.) ; Lerendegui-Marco, J (Lodz U.) ; Lerner, G (Valencia U., IFIC) ; Manna, A (INFN, Bologna ; U. Bologna, DIFA) ; Masi, A (Valencia U., IFIC) ; Massimi, C (INFN, Bologna ; U. Bologna, DIFA) ; Mastinu, P (INFN, Legnaro) ; Mastromarco, M (INFN, Bari ; Bari U.) ; Matteucci, F (INFN, Trieste ; Trieste U.) ; Maugeri, E A (PSI, Villigen) ; Mazzone, A (INFN, Bari ; CNR, INO, Pisa) ; Mengoni, A (ENEA, Casaccia ; INFN, Bologna) ; Michalopoulou, V (Natl. Tech. U., Athens ; Valencia U., IFIC) ; Milazzo, P M (INFN, Trieste) ; Mucciola, R (INFN, Perugia ; U. Perugia (main)) ; Murtas, F (Frascati) ; Musacchio-Gonzalez, E (INFN, Legnaro) ; Musumarra, A (INFN, Catania ; INFN, LNS ; Catania U.) ; Negret, A (Bucharest, IFIN-HH) ; Oprea, A (Bucharest, IFIN-HH) ; Pérez-Maroto, P (Seville U.) ; Patronis, N (Ioannina U.) ; PavónRodríguez, J A (Seville U.) ; Pellegriti, M G (INFN, Catania) ; Perkowski, J (Granada U.) ; Petrone, C (Bucharest, IFIN-HH) ; Piersanti, L (INFN, Perugia ; Cagliari Observ.) ; Pirovano, E (Braunschweig, Phys. Tech. Bund.) ; Pomp, S (Uppsala U.) ; Porras, I (INFN, Catania) ; Praena, J (INFN, Catania ; Valencia U., IFIC) ; Protti, N (CERN ; INFN, Pavia) ; Quesada, J M (Seville U.) ; Rauscher, T (Basel U.) ; Reifarth, R (Goethe U., Frankfurt (main)) ; Rochman, D (PSI, Villigen) ; Romanets, Y (Lisbon, IST) ; Romano, F (INFN, Catania) ; Rubbia, C (Valencia U., IFIC) ; Sabaté-Gilarte, M (Valencia U., IFIC) ; Schillebeeckx, P (Geel, JRC) ; Schumann, D (PSI, Villigen) ; Sekhar, A (Manchester U.) ; Smith, A G (Manchester U.) ; Sosnin, N V (Edinburgh U.) ; Spelta, M (INFN, Bologna ; U. Bologna, DIFA) ; Stamati, M E (Ioannina U.) ; Tagliente, G (INFN, Bari) ; Tarifeño-Saldivia, A (Barcelona, Polytechnic U.) ; Tarrío, D (Uppsala U.) ; Terranova, N (ENEA, Casaccia ; Frascati) ; Torres-Sánchez, P (INFN, Catania) ; Urlass, S (HZDR, Dresden ; Valencia U., IFIC) ; Valenta, S (Charles U.) ; Variale, V (INFN, Bari) ; Vaz, P (Lisbon, IST) ; Vescovi, D (Goethe U., Frankfurt (main)) ; Vlachoudis, V (Valencia U., IFIC) ; Vlastou, R (Natl. Tech. U., Athens) ; Wallner, A (Australian Natl. U., Canberra) ; Woods, P J (Edinburgh U.) ; Wright, T (Manchester U.) ; Žugec, P (Zagreb U., Phys. Dept.)

Publication 2023
Number of pages 5
In: EPJ Web Conf. 284 (2023) 01043
In: 15th International Conference on Nuclear Data for Science and Technology, Online, 21 - 29 Jul 2022, pp.01043
DOI 10.1051/epjconf/202328401043
Subject category Detectors and Experimental Techniques
Accelerator/Facility, Experiment CERN PS ; nTOF
Abstract The neutron time-of-flight facility n_TOF is characterised by its high instantaneous neutron intensity, high-resolution and broad neutron energy spectra, specially conceived for neutron-induced reaction cross section measurements. Two Time-Of-Flight (TOF) experimental areas are available at the facility: experimental area 1 (EAR1), located at the end of the 185 m horizontal flight path from the spallation target, and experimental area 2 (EAR2), placed at 20 m from the target in the vertical direction. The neutron fluence in EAR2 is   300 times more intense than in EAR1 in the relevant time-of-flight window. EAR2 was designed to carry out challenging cross-section measurements with low mass samples (approximately 1 mg), reactions with small cross-sections or/and highly radioactive samples. The high instantaneous fluence of EAR2 results in high counting rates that challenge the existing capture systems. Therefore, the sTED detector has been designed to mitigate these effects. In 2021, a dedicated campaign was done validating the performance of the detector up to at least 300 keV neutron energy. After this campaign, the detector has been used to perform various capture cross section measurements at n_TOF EAR2.
Copyright/License publication: © 2023-2024 The authors
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 Datensatz erzeugt am 2024-11-05, letzte Änderung am 2024-11-05


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