Measurements of short-lived fission product yields using monoenergetic neutron and photon beams

A joint TUNL-LLNL-LANL collaboration was formed to measure the absolute fission product yields from the 235 U, 238 U, and 239 Pu isotopes. Our goal is to study the energy evolution of fission products using monoenergetic beams. In order to extend our successful fission product-yield studies to inclu...

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Veröffentlicht in:EPJ Web of Conferences 2020, Vol.242, p.1004
Hauptverfasser: Finch, Sean, Gooden, Matthew, Hagmann, Chris, Howell, Calvin, Linero, Vanessa, Silano, Jack, Stoyer, Mark, Tonchev, Anton, Tornow, Werner, Tsorxe, Innocent, Wilhelmy, Jerry
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Sprache:eng
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Zusammenfassung:A joint TUNL-LLNL-LANL collaboration was formed to measure the absolute fission product yields from the 235 U, 238 U, and 239 Pu isotopes. Our goal is to study the energy evolution of fission products using monoenergetic beams. In order to extend our successful fission product-yield studies to include products with shorter half-lives, a RApid Belt-driven Irradiated Target Transfer System, named RABITTS, was constructed. This system allows us to perform cyclic activation and quantify fission products with γ-ray spectroscopy using HPGe detectors. Both a 1 meter and 10 meter transfer system have been developed, with transit times of 0.4 and 1.1 seconds, respectively. Using these systems, we have measured sub-second half-lives. Our goal is to measure fission product yields from neutron-induced fission with E n = 0.5 − 14.8 MeV and photofission with E γ = 8 − 15 MeV. A detailed characterization of the system’s performance is presented, including preliminary fission product measurements, and the expected sensitivity.
ISSN:2100-014X
2101-6275
2100-014X
DOI:10.1051/epjconf/202024201004