Accurate fission data for nuclear safety
A. Solders, D. Gorelov, A. Jokinen, V.S. Kolhinen, M. Lantz, A., Mattera, H. Penttila, S. Pomp, V. Rakopoulos, and S. Rinta-Antila

TL;DR
The AlFONS project develops high-precision fission yield measurements using advanced mass separation techniques and a flexible neutron source to improve nuclear safety data for various neutron spectra.
Contribution
It introduces a novel experimental setup combining a high-current light ion cyclotron with a versatile neutron converter target for detailed fission yield studies.
Findings
Design of a flexible neutron converter target.
Achievement of high mass resolving power in fission product analysis.
Preparation for extensive neutron-induced fission yield measurements.
Abstract
The Accurate fission data for nuclear safety (AlFONS) project aims at high precision measurements of fission yields, using the renewed IGISOL mass separator facility in combination with a new high current light ion cyclotron at the University of Jyvaskyla. The 30 MeV proton beam will be used to create fast and thermal neutron spectra for the study of neutron induced fission yields. Thanks to a series of mass separating elements, culminating with the JYFLTRAP Penning trap, it is possible to achieve a mass resolving power in the order of a few hundred thousands. In this paper we present the experimental setup and the design of a neutron converter target for IGISOL. The goal is to have a flexible design. For studies of exotic nuclei far from stability a high neutron flux (10^12 neutrons/s) at energies 1 - 30 MeV is desired while for reactor applications neutron spectra that resembles…
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Taxonomy
TopicsNuclear Physics and Applications · Nuclear reactor physics and engineering · Nuclear physics research studies
