Clustering in \(^{18}\)O -- absolute determination of branching ratios via high-resolution particle spectroscopy
The determination of absolute branching ratios for high-energy states in light nuclei is an important and useful tool for probing the underlying nuclear structure of individual resonances: for example, in establishing the tendency of an excited state towards \(\alpha\)-cluster structure. Difficulty...
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Abstract | The determination of absolute branching ratios for high-energy states in light nuclei is an important and useful tool for probing the underlying nuclear structure of individual resonances: for example, in establishing the tendency of an excited state towards \(\alpha\)-cluster structure. Difficulty arises in measuring these branching ratios due to similarities in available decay channels, such as (\(\mathbf{^{18}}\)O,\(\mathbf{n}\)) and (\(\mathbf{^{18}}\)O,\(\mathbf{2n}\)), as well as differences in geometric efficiencies due to population of bound excited levels in daughter nuclei. Methods are presented using Monte Carlo techniques to overcome these issues. |
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AbstractList | The determination of absolute branching ratios for high-energy states in light nuclei is an important and useful tool for probing the underlying nuclear structure of individual resonances: for example, in establishing the tendency of an excited state towards \(\alpha\)-cluster structure. Difficulty arises in measuring these branching ratios due to similarities in available decay channels, such as (\(\mathbf{^{18}}\)O,\(\mathbf{n}\)) and (\(\mathbf{^{18}}\)O,\(\mathbf{2n}\)), as well as differences in geometric efficiencies due to population of bound excited levels in daughter nuclei. Methods are presented using Monte Carlo techniques to overcome these issues. |
Author | Torresi, D Pirrie, S Wheldon, C Kokalova, Tz Bishop, J H -F Wirth Dell'Aquila, D Smith, R Mengoni, D Curtis, N Faestermann, Th Hertenberger, R Bailey, S Turner, A |
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Title | Clustering in \(^{18}\)O -- absolute determination of branching ratios via high-resolution particle spectroscopy |
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