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The $(n,2n)$ reaction for the lightest stable erbium isotope $^{162}\mathrm{Er}$ from reaction threshold up to 19 MeV
The Er162(n,2n)Er161 reaction cross section (Eth=9.26MeV) was measured at six incident neutron beam energies by means of the activation technique. Two energy regions were covered in the present work: the near-threshold energies between 10.7 and 11.3 MeV, as well as the higher energies from 17.1 up t...
Autores principales: | , , , , , , , , , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2018
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1103/PhysRevC.98.014622 http://cds.cern.ch/record/2657134 |
_version_ | 1780961245486120960 |
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author | Georgali, E Eleme, Z Patronis, N Aslanoglou, X Axiotis, M Diakaki, M Foteinou, V Harissopulos, S Kalamara, A Kokkoris, M Lagoyannis, A Nicolis, N G Provatas, G Stamatopoulos, A Stoulos, S Tsinganis, A Vagena, E Vlastou, R Vogiatzi, S M |
author_facet | Georgali, E Eleme, Z Patronis, N Aslanoglou, X Axiotis, M Diakaki, M Foteinou, V Harissopulos, S Kalamara, A Kokkoris, M Lagoyannis, A Nicolis, N G Provatas, G Stamatopoulos, A Stoulos, S Tsinganis, A Vagena, E Vlastou, R Vogiatzi, S M |
author_sort | Georgali, E |
collection | CERN |
description | The Er162(n,2n)Er161 reaction cross section (Eth=9.26MeV) was measured at six incident neutron beam energies by means of the activation technique. Two energy regions were covered in the present work: the near-threshold energies between 10.7 and 11.3 MeV, as well as the higher energies from 17.1 up to 19.0 MeV. In this way, the energy range from the reaction threshold up to 19 MeV was experimentally mapped, considering also the existing experimental information around 14 MeV. The quasi-monoenergetic neutron beam at near-threshold energies was produced via the H2(d,n)He3 reaction, while the higher neutron beam energies were achieved by using the H3(d,n)He4 reaction. The primary deuteron beam was delivered in both cases by the 5.5 MV Tandem Van de Graaff accelerator of NSCR “Demokritos.” Statistical model calculations were performed and compared with all the available experimental data. |
id | oai-inspirehep.net-1684577 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2018 |
record_format | invenio |
spelling | oai-inspirehep.net-16845772020-05-15T15:32:08Zdoi:10.1103/PhysRevC.98.014622http://cds.cern.ch/record/2657134engGeorgali, EEleme, ZPatronis, NAslanoglou, XAxiotis, MDiakaki, MFoteinou, VHarissopulos, SKalamara, AKokkoris, MLagoyannis, ANicolis, N GProvatas, GStamatopoulos, AStoulos, STsinganis, AVagena, EVlastou, RVogiatzi, S MThe $(n,2n)$ reaction for the lightest stable erbium isotope $^{162}\mathrm{Er}$ from reaction threshold up to 19 MeVNuclear Physics - ExperimentThe Er162(n,2n)Er161 reaction cross section (Eth=9.26MeV) was measured at six incident neutron beam energies by means of the activation technique. Two energy regions were covered in the present work: the near-threshold energies between 10.7 and 11.3 MeV, as well as the higher energies from 17.1 up to 19.0 MeV. In this way, the energy range from the reaction threshold up to 19 MeV was experimentally mapped, considering also the existing experimental information around 14 MeV. The quasi-monoenergetic neutron beam at near-threshold energies was produced via the H2(d,n)He3 reaction, while the higher neutron beam energies were achieved by using the H3(d,n)He4 reaction. The primary deuteron beam was delivered in both cases by the 5.5 MV Tandem Van de Graaff accelerator of NSCR “Demokritos.” Statistical model calculations were performed and compared with all the available experimental data.oai:inspirehep.net:16845772018 |
spellingShingle | Nuclear Physics - Experiment Georgali, E Eleme, Z Patronis, N Aslanoglou, X Axiotis, M Diakaki, M Foteinou, V Harissopulos, S Kalamara, A Kokkoris, M Lagoyannis, A Nicolis, N G Provatas, G Stamatopoulos, A Stoulos, S Tsinganis, A Vagena, E Vlastou, R Vogiatzi, S M The $(n,2n)$ reaction for the lightest stable erbium isotope $^{162}\mathrm{Er}$ from reaction threshold up to 19 MeV |
title | The $(n,2n)$ reaction for the lightest stable erbium isotope $^{162}\mathrm{Er}$ from reaction threshold up to 19 MeV |
title_full | The $(n,2n)$ reaction for the lightest stable erbium isotope $^{162}\mathrm{Er}$ from reaction threshold up to 19 MeV |
title_fullStr | The $(n,2n)$ reaction for the lightest stable erbium isotope $^{162}\mathrm{Er}$ from reaction threshold up to 19 MeV |
title_full_unstemmed | The $(n,2n)$ reaction for the lightest stable erbium isotope $^{162}\mathrm{Er}$ from reaction threshold up to 19 MeV |
title_short | The $(n,2n)$ reaction for the lightest stable erbium isotope $^{162}\mathrm{Er}$ from reaction threshold up to 19 MeV |
title_sort | $(n,2n)$ reaction for the lightest stable erbium isotope $^{162}\mathrm{er}$ from reaction threshold up to 19 mev |
topic | Nuclear Physics - Experiment |
url | https://dx.doi.org/10.1103/PhysRevC.98.014622 http://cds.cern.ch/record/2657134 |
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