Baseline design of a low energy neutron source at ESS-Bilbao

This article briefly describes the basic design of the ESS-Bilbao neutron target station as well as its expected neutronic performance. The baseline engineering design, associated ancillary systems, and plant layout for the facility is now complete. A rotating target composed of twenty beryllium pla...

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Veröffentlicht in:Journal of physics. Conference series 2014-01, Vol.549 (1), p.12001-12
Hauptverfasser: Sordo, F, Fernandez-Alonso, F, Gonzalez, M A, Ghiglino, A, Magán, M, Terrón, S, Martínez, F, de Vicente, J P, Vivanco, R, Bermejo, F J, Perlado, J M
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Sprache:eng
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Zusammenfassung:This article briefly describes the basic design of the ESS-Bilbao neutron target station as well as its expected neutronic performance. The baseline engineering design, associated ancillary systems, and plant layout for the facility is now complete. A rotating target composed of twenty beryllium plates has been selected as the best choice in terms of both neutron yield and engineering complexity. It will provide neutron beams with a source term of 1015 n s−1 resulting from the direct 9Be(p, xn) reaction using a 75 mA proton beam at 50 MeV. The design envisages a target station equipped with two fully optimized moderators capable of withstanding a proton-beam power of 112 kW. This design is flexible enough to accommodate future upgrades in final proton energy. The envisaged neutron-beam brightness will enable several applications, including the use of cold and thermal neutrons for condensed matter research as well as fast-neutron irradiation studies. We close by discussing the role that this facility may play once the European Spallation Source becomes operational in Lund, Sweden.
ISSN:1742-6588
1742-6596
DOI:10.1088/1742-6596/549/1/012001