Monte Carlo simulations and n-p differential scattering data measured with Proton Recoil Telescopes

D Terranova, O Aberle, V Alcayne, S. Amaducci, J. Andrzejewski, L Audouin, V Babiano-Suarez, M Bacak, M Barbagallo, S. Bennett, E. Berthoumieux, Anton Wallner

    Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

    Abstract

    The neutron-induced fission cross section of U-235, a standard at thermal energy and between 0.15 MeV and 200 MeV, plays a crucial role in nuclear technology applications. The long-standing need of improving cross section data above 20 MeV and the lack of experimental data above 200 MeV motivated a new experimental campaign at the n_TOF facility at CERN. The measurement has been performed in 2018 at the experimental area 1 (EAR1), located at 185 m from the neutron-producing target (the experiment is presented by A. Manna et al. in a contribution to this conference). The U-235(n,f) cross section from 20 MeV up to about 1 GeV has been measured relative to the H-1(n,n)H-1 reaction, which is considered the primary reference in this energy region. The neutron flux impinging on the U-235 sample (a key quantity for determining the fission events) has been obtained by detecting recoil protons originating from n-p scattering in a C2H4 sample. Two Proton Recoil Telescopes (PRT), consisting of several layers of solid-state detectors and fast plastic scintillators, have been located at proton scattering angles of 25.07 degrees and 20.32 degrees, out of the neutron beam. The PRTs exploit the Delta E-E technique for particle identification, a basic requirement for the rejection of charged particles from neutron-induced reactions in carbon. Extensive Monte Carlo simulations were performed to characterize proton transport through the different slabs of silicon and scintillation detectors, to optimize the experimental set-up and to deduce the efficiency of the whole PRT detector. In this work we compare measured data collected with the PRTs with a full Monte Carlo simulation based on the Geant-4 toolkit.
    Original languageEnglish
    Title of host publicationAccurate measurement of the standard 235U(n,f) cross section from thermal to 170 keV neutron energy
    Place of PublicationChina
    PublisherEPJ Web of Conferences
    ISBN (Print)978-2-7598-9106-1
    DOIs
    Publication statusPublished - 2020
    Event2019: International Conference on Nuclear Data for Science and Technology - Beijing, China, China
    Duration: 1 Jan 2019 → …

    Conference

    Conference2019: International Conference on Nuclear Data for Science and Technology
    Country/TerritoryChina
    Period1/01/19 → …
    OtherMay 19-24

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