Precise calculations in simulations of the interaction of low energy neutrons with nano-dispersed media
- Authors: Artem’ev V.A.1,2, Nezvanov A.Y.2, Nesvizhevsky V.V.3
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Affiliations:
- Research Institute of Materials Technology
- Moscow State Industrial University
- Institut Max von Laue—Paul Langevin
- Issue: Vol 61, No 1 (2016)
- Pages: 84-88
- Section: Diffraction and Scattering of Neutrons
- URL: https://journal-vniispk.ru/1063-7745/article/view/189627
- DOI: https://doi.org/10.1134/S1063774516010028
- ID: 189627
Cite item
Abstract
We discuss properties of the interaction of slow neutrons with nano-dispersed media and their application for neutron reflectors. In order to increase the accuracy of model simulation of the interaction of neutrons with nanopowders, we perform precise quantum mechanical calculation of potential scattering of neutrons on single nanoparticles using the method of phase functions. We compare results of precise calculations with those performed within first Born approximation for nanodiamonds with the radius of 2–5 nm and for neutron energies 3 × 10-7–10-3 eV. Born approximation overestimates the probability of scattering to large angles, while the accuracy of evaluation of integral characteristics (cross sections, albedo) is acceptable. Using Monte-Carlo method, we calculate albedo of neutrons from different layers of piled up diamond nanopowder.
About the authors
V. A. Artem’ev
Research Institute of Materials Technology; Moscow State Industrial University
Author for correspondence.
Email: niitm@inbox.ru
Russian Federation, Moscow; Moscow
A. Yu. Nezvanov
Moscow State Industrial University
Email: niitm@inbox.ru
Russian Federation, Moscow
V. V. Nesvizhevsky
Institut Max von Laue—Paul Langevin
Email: niitm@inbox.ru
France, Grenoble
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