Disappearance of Mott Oscillations in Sub-barrier Elastic Scattering of Identical Nuclei and Atomic Ions

The scattering of identical nuclei at low energies exhibits conspicuous Mott oscillations which can be used to investigate the presence of components in the predominantly Coulomb interaction arising from several physical effects. It is found that at a certain critical value of the Sommerfeld paramet...

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Published in:Few-body systems Vol. 57; no. 3; pp. 195 - 203
Main Authors: Hussein, M. S., Canto, L. F., Donangelo, R., Mittig, W.
Format: Journal Article
Language:English
Published: Vienna Springer Vienna 01-03-2016
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Abstract The scattering of identical nuclei at low energies exhibits conspicuous Mott oscillations which can be used to investigate the presence of components in the predominantly Coulomb interaction arising from several physical effects. It is found that at a certain critical value of the Sommerfeld parameter the Mott oscillations disappear and the cross section becomes quite flat. We call this effect Transverse Isotropy (TI). The critical value of the Sommerfeld parameter at which TI sets in is found to be η c = 3 s + 2 , where s is the spin of the nuclei participating in the scattering. No TI is found in the Mott scattering of identical Fermionic nuclei. The critical center of mass energy corresponding to η c is found to be E c = 0.40 MeV for α + α (s = 0), 1.2 MeV for 6 Li + 6 LI (s = 1) and 7.1 MeV for 10 B + 10 B (s = 3). We further found that the inclusion of the nuclear interaction induces a significant modification in the TI. We suggest measurements at these sub-barrier energies for the purpose of extracting useful information about the nuclear interaction between light heavy ions. We also suggest extending the study of the TI to the scattering of identical atomic ions.
AbstractList (ProQuest: ... denotes formulae and/or non-USASCII text omitted; see image).The scattering of identical nuclei at low energies exhibits conspicuous Mott oscillations which can be used to investigate the presence of components in the predominantly Coulomb interaction arising from several physical effects. It is found that at a certain critical value of the Sommerfeld parameter the Mott oscillations disappear and the cross section becomes quite flat. We call this effect Transverse Isotropy (TI). The critical value of the Sommerfeld parameter at which TI sets in is found to be ..., where s is the spin of the nuclei participating in the scattering. No TI is found in the Mott scattering of identical Fermionic nuclei. The critical center of mass energy corresponding to ... is found to be ... MeV for ... (s = 0), 1.2 MeV for ...Li + ...LI (s = 1) and 7.1 MeV for ...B + ...B (s = 3). We further found that the inclusion of the nuclear interaction induces a significant modification in the TI. We suggest measurements at these sub-barrier energies for the purpose of extracting useful information about the nuclear interaction between light heavy ions. We also suggest extending the study of the TI to the scattering of identical atomic ions.
The scattering of identical nuclei at low energies exhibits conspicuous Mott oscillations which can be used to investigate the presence of components in the predominantly Coulomb interaction arising from several physical effects. It is found that at a certain critical value of the Sommerfeld parameter the Mott oscillations disappear and the cross section becomes quite flat. We call this effect Transverse Isotropy (TI). The critical value of the Sommerfeld parameter at which TI sets in is found to be η c = 3 s + 2 , where s is the spin of the nuclei participating in the scattering. No TI is found in the Mott scattering of identical Fermionic nuclei. The critical center of mass energy corresponding to η c is found to be E c = 0.40 MeV for α + α (s = 0), 1.2 MeV for 6 Li + 6 LI (s = 1) and 7.1 MeV for 10 B + 10 B (s = 3). We further found that the inclusion of the nuclear interaction induces a significant modification in the TI. We suggest measurements at these sub-barrier energies for the purpose of extracting useful information about the nuclear interaction between light heavy ions. We also suggest extending the study of the TI to the scattering of identical atomic ions.
Author Hussein, M. S.
Canto, L. F.
Mittig, W.
Donangelo, R.
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CitedBy_id crossref_primary_10_1016_j_nimb_2019_09_022
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Issue 3
Keywords Identical Nucleus
Identical Particle
Transverse Isotropy
Nuclear Interaction
Elastic Scattering
Language English
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Snippet The scattering of identical nuclei at low energies exhibits conspicuous Mott oscillations which can be used to investigate the presence of components in the...
(ProQuest: ... denotes formulae and/or non-USASCII text omitted; see image) The scattering of identical nuclei at low energies exhibits conspicuous Mott...
(ProQuest: ... denotes formulae and/or non-USASCII text omitted; see image).The scattering of identical nuclei at low energies exhibits conspicuous Mott...
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StartPage 195
SubjectTerms Atomic
Cross sections
Few-body systems
Hadrons
Heavy Ions
Ions
Isotropy
Lithium
Molecular
Nuclear interactions
Nuclear Physics
Nuclei
Optical and Plasma Physics
Oscillations
Particle and Nuclear Physics
Physics
Physics and Astronomy
Scattering
Texts
Weakly-Bound Exotic Nuclei
Title Disappearance of Mott Oscillations in Sub-barrier Elastic Scattering of Identical Nuclei and Atomic Ions
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