6533b829fe1ef96bd128a28e

RESEARCH PRODUCT

Neutron capture cross section measurement ofU238at the CERN n_TOF facility in the energy region from 1 eV to 700 keV

A. PavlikC. Domingo-pardoJ. MarganiecM. Sabaté-gilarteJavier PraenaS. Lo MeoP. F. MastinuL. S. LeongS. ValentaP. M. MilazzoA. K. SaxenaC. LampoudisI. F. GonçalvesJ. L. TainMarco CalvianiM. MireaC. LedererE. ChiaveriD. Cano-ottF. BečvářM. MastromarcoF. GunsingM. A. Cortés-giraldoT. WrightM. P. W. ChinJeri KrollE. JerichaR. SarmentoF. MingroneP. VazC. WeißA. Hernández-prietoJ. AndrzejewskiR. LositoCarlo RubbiaS. SchmidtA. J. M. PlompenF. CeruttiA. RiegoAlberto VenturaAnton WallnerAlfredo FerrariE. BerthoumieuxCristian MassimiSrinivasan GanesanT. WareA. ManousosF. KäppelerC. ParadelaAlberto MengoniS. AltstadtR. VlastouM. KokkorisN. KivelE. GriesmayerE. Leal-cidonchaK. FravalDamir BosnarPetar ŽUgecY. KadiV. BécaresCarlos GuerreroMario BarbagalloC. EleftheriadisD. SchumannM. KrtičkaF. CalviñoThomas RauscherT. MartinezP. SchillebeeckxD. G. JenkinsP. E. KoehlerJ. BillowesG. TaglienteD. KaradimosChristoph LangerA. TsinganisW. MondalaersE. González-romeroM. S. RoblesNicola ColonnaG. GiubroneA. R. GarcíaVasilis VlachoudisM. BruggerM. DiakakiI. DuranG. CortesD. TarríoR. DresslerM. J. VermeulenH. LeebV. VarialeJ. PerkowskiA. MallickG. VanniniM. WeigandF. BelloniC. CarrapiçoE. MendozaRene ReifarthJ. M. QuesadaL. Tassan-gotL. Audouin

subject

Physics010308 nuclear & particles physicsGamma rayNuclear dataScintillator7. Clean energy01 natural sciencesResonance (particle physics)Nuclear physicsNeutron captureNuclear reactor core0103 physical sciencesNeutron cross sectionNeutron010306 general physics

description

The aim of this work is to provide a precise and accurate measurement of the U238(n,γ) reaction cross section in the energy region from 1 eV to 700 keV. This reaction is of fundamental importance for the design calculations of nuclear reactors, governing the behavior of the reactor core. In particular, fast reactors, which are experiencing a growing interest for their ability to burn radioactive waste, operate in the high energy region of the neutron spectrum. In this energy region most recent evaluations disagree due to inconsistencies in the existing measurements of up to 15%. In addition, the assessment of nuclear data uncertainty performed for innovative reactor systems shows that the uncertainty in the radiative capture cross section of U238 should be further reduced to 1-3% in the energy region from 20 eV to 25 keV. To this purpose, addressed by the Nuclear Energy Agency as a priority nuclear data need, complementary experiments, one at the GELINA and two at the n-TOF facility, were proposed and carried out within the 7th Framework Project ANDES of the European Commission. The results of one of these U238(n,γ) measurements performed at the n-TOF CERN facility are presented in this work. The γ-ray cascade following the radiative neutron capture has been detected exploiting a setup of two C6D6 liquid scintillators. Resonance parameters obtained from this work are on average in excellent agreement with the ones reported in evaluated libraries. In the unresolved resonance region, this work yields a cross section in agreement with evaluated libraries up to 80 keV, while for higher energies our results are significantly higher.

https://doi.org/10.1103/physrevc.95.034604