Very low-energy nucleon- O 16 coupled-channel scattering: Results with a phenomenological vibrational model

© 2017 American Physical Society. We employ a collective vibration coupled-channel model to describe the nucleon-O16 cluster systems, obtaining low-excitation spectra for O17 and F17. Bound and resonance states of the compound systems have been deduced, showing good agreement with experimental spect...

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Main Authors: Svenne, J., Canton, L., Amos, K., Fraser, Paul, Karataglidis, S., Pisent, G., Van Der Knijff, D.
Format: Journal Article
Published: The American Physical Society 2017
Online Access:http://hdl.handle.net/20.500.11937/68426
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author Svenne, J.
Canton, L.
Amos, K.
Fraser, Paul
Karataglidis, S.
Pisent, G.
Van Der Knijff, D.
author_facet Svenne, J.
Canton, L.
Amos, K.
Fraser, Paul
Karataglidis, S.
Pisent, G.
Van Der Knijff, D.
author_sort Svenne, J.
building Curtin Institutional Repository
collection Online Access
description © 2017 American Physical Society. We employ a collective vibration coupled-channel model to describe the nucleon-O16 cluster systems, obtaining low-excitation spectra for O17 and F17. Bound and resonance states of the compound systems have been deduced, showing good agreement with experimental spectra. Low-energy scattering cross sections of neutrons and protons from O16 also have been calculated and the results compare well with available experimental data.
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format Journal Article
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institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T10:37:24Z
publishDate 2017
publisher The American Physical Society
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spelling curtin-20.500.11937-684262018-06-29T12:35:00Z Very low-energy nucleon- O 16 coupled-channel scattering: Results with a phenomenological vibrational model Svenne, J. Canton, L. Amos, K. Fraser, Paul Karataglidis, S. Pisent, G. Van Der Knijff, D. © 2017 American Physical Society. We employ a collective vibration coupled-channel model to describe the nucleon-O16 cluster systems, obtaining low-excitation spectra for O17 and F17. Bound and resonance states of the compound systems have been deduced, showing good agreement with experimental spectra. Low-energy scattering cross sections of neutrons and protons from O16 also have been calculated and the results compare well with available experimental data. 2017 Journal Article http://hdl.handle.net/20.500.11937/68426 10.1103/PhysRevC.95.034305 The American Physical Society restricted
spellingShingle Svenne, J.
Canton, L.
Amos, K.
Fraser, Paul
Karataglidis, S.
Pisent, G.
Van Der Knijff, D.
Very low-energy nucleon- O 16 coupled-channel scattering: Results with a phenomenological vibrational model
title Very low-energy nucleon- O 16 coupled-channel scattering: Results with a phenomenological vibrational model
title_full Very low-energy nucleon- O 16 coupled-channel scattering: Results with a phenomenological vibrational model
title_fullStr Very low-energy nucleon- O 16 coupled-channel scattering: Results with a phenomenological vibrational model
title_full_unstemmed Very low-energy nucleon- O 16 coupled-channel scattering: Results with a phenomenological vibrational model
title_short Very low-energy nucleon- O 16 coupled-channel scattering: Results with a phenomenological vibrational model
title_sort very low-energy nucleon- o 16 coupled-channel scattering: results with a phenomenological vibrational model
url http://hdl.handle.net/20.500.11937/68426