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Spatial distribution of thorium fission rate in a fast spallation and fission neutron field: An experimental and Monte Carlo study
Authors:JJ BorgerSR Hashemi-Nezhad  D AlexievR Brandt  W WestmeierB Thomauske  J AdamM Kadykov  S Tiutiunnikov
Affiliation:a School of Physics, University of Sydney, NSW 2006, Australia
b Kernchemie Institute, Philipps-Universität, 35032 Marburg, Germany
c Forschungzentrum Jülich, ISR-6, 52425 Jülich, Germany
d Joint Institute for Nuclear Research, 141980 Dubna, Russian Federation
Abstract:The Energy plus Transmutation (EpT) set-up of the Joint Institute for Nuclear Research (JINR), Dubna, Russia is composed of a lead spallation target surrounded by a blanket of natural uranium. The resultant neutron spectrum is a combination of spallation and fission spectra, modified by a reflective external layer of polyethylene and an internal absorbing layer of cadmium. The EpT set-up was irradiated with a beam of 4 GeV deuterons from the Nuclotron Accelerator at JINR. The spatial distribution of thorium fission rate within the assembly was determined experimentally, using a fission track detector technique, and compared with Monte Carlo predictions of the MCNPX code. Contributions of neutrons, protons, deuterons, photons and pions to total fission were taken into account. Close agreement between the experimental and calculated results was found.
Keywords:Accelerator-driven Systems  Thorium fission  Neutron-induced fission  Proton-induced fission  Deuteron-induced fission  MCNPX code
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