PAPER / ARXIV:2609.13033
T. Materna , P. Herran , M. Ballu , Q. Poirier , A. Letourneau , D. Doré , L. Thulliez , C. Michelagnoli , F. Kandzia , Y. H. Kim , U. Köster , O. Litaize , O. Sérot , A. Chebboubi
RESUMO
We present preliminary results from a measurement campaign conducted with the FIPPS $\gamma$-ray spectrometer at the ILL using an active target made of $^{235}$U dissolved in a liquid scintillator. Prompt $\gamma$ rays were used to extract absolute, independent isotopic fission yields. We obtained yields for a selected set of well-produced even-even nuclei from the $^{235}$U(n$_{\mathrm{th}}$,f) reaction and compared them with JEFF-3.3 evaluated data. This included the doubly magic nucleus $^{132}$Sn, for which we observed a pronounced deficit (about a factor 7) with respect to JEFF-3.3. Using the FIFRELIN fission fragment de-excitation code, we interpreted this discrepancy as evidence that $^{132}$Sn is mainly produced in its ground state at scission or after neutron evaporation. Delayed $\gamma$ rays recorded in the same experiment were also analysed. No deviation was found in the beta decay of $^{132}$Sn compared to the nuclear database. However, an excess of about a 40% was found in the $\beta$ decay of $^{90}$Kr, which may originate from an overestimated ground-state feeding of $^{90}$Rb in the evaluated data.
NO MESMO MAPA