학술논문

High accuracy, high resolution 235U(n,f) cross section from n_TOF (CERN) in the thermal to 10 keV energy range
Document Type
Working Paper
Author
collaboration, n_TOFMastromarco, M.Amaducci, S.Colonna, N.Finocchiaro, P.Cosentino, L.Aberle, O.Andrzejewski, J.Audouin, L.Bacak, M.Balibrea, J.Barbagallo, M.Bečvář, F.Berthoumieux, E.Billowes, J.Bosnar, D.Brown, A.Caamaño, M.Calviño, F.Calviani, M.Cano-Ott, D.Cardella, R.Casanovas, A.Cerutti, F.Chen, Y. H.Chiaveri, E.Cortés, G.Cortés-Giraldo, M. A.Damone, L. A.Diakaki, M.Domingo-Pardo, C.Dressler, R.Dupont, E.Durán, I.Fernández-Domínguez, B.Ferrari, A.Ferreira, P.Furman, V.Göbel, K.García, A. R.Gawlik, A.Gilardoni, S.Glodariu, T.Gonçalves, I. F.González-Romero, E.Griesmayer, E.Guerrero, C.Gunsing, F.Harada, H.Heinitz, S.Heyse, J.Jenkins, D. G.Jericha, E.Käppeler, F.Kadi, Y.Kalamara, A.Kavrigin, P.Kimura, A.Kivel, N.Knapova, I.Kokkoris, M.Krtička, M.Kurtulgil, D.Leal-Cidoncha, E.Lederer, C.Leeb, H.Lerendegui-Marco, J.Meo, S. LoLonsdale, S. J.Macina, D.Manna, A.Marganiec, J.Martínez, T.Masi, A.Massimi, C.Mastinu, P.Maugeri, E. A.Mazzone, A.Mendoza, E.Mengoni, A.Milazzo, P. M.Mingrone, F.Musumarra, A.Negret, A.Nolte, R.Oprea, A.Patronis, N.Pavlik, A.Perkowski, J.Porras, I.Praena, J.Quesada, J. M.Radeck, D.Rauscher, T.Reifarth, R.Rubbia, C.Ryan, J. A.Sabaté-Gilarte, M.Saxena, A.Schillebeeckx, P.Schumann, D.Sedyshev, P.Smith, A. G.Sosnin, N. V.Stamatopoulos, A.Tagliente, G.Tain, J. L.Tarifeño-Saldivia, A.Tassan-Got, L.Valenta, S.Vannini, G.Variale, V.Vaz, P.Ventura, A.Vlachoudis, V.Vlastou, R.Wallner, A.Warren, S.Weiss, C.Woods, P. J.Wright, T.Žugec, P.
Source
Subject
Nuclear Experiment
Language
Abstract
The 235U(n,f) cross section was measured in a wide energy range (25 meV - 170 keV) at the n_TOF facility at CERN, relative to 6Li(n,t) and 10B(n,alpha) standard reactions, with high resolution and accuracy, with a setup based on a stack of six samples and six silicon detectors placed in the neutron beam. In this paper we report on the results in the region between thermal and 10 keV neutron energy. A resonance analysis has been performed up to 200 eV, with the code SAMMY. The resulting fission kernels are compared with the ones extracted on the basis of the resonance parameters of the most recent major evaluated data libraries. A comparison of the n_TOF data with the evaluated cross sections is also performed from thermal to 10 keV neutron energy for the energy-averaged cross section in energy groups of suitably chosen width. A good agreement is found in average between the new results and the latest evaluated data files ENDF-B/VIII and JEFF-3.3, as well as with respect to the IAEA reference files. However, some discrepancies are still present in some specific energy regions. The new dataset here presented, characterized by unprecedented resolution and accuracy, can help improving the evaluations in the Resolved Resonance Region and up to 10 keV, and reduce the uncertainties that affect this region.