Estudo da Estrutura dos Núcleos 17Ne e 13O pela reação de pick-up (3He, 6He)

The nuclear structme of 17Ne and 13O has been studied by the 20Ne(3He,6He)17Ne and 16O(3He,6He)13O reactions at 70 MeV and 80 MeV, respectively. Fifteen levels were identified, and angular distributions have been measured for nine of these levels in 17Ne, while for 13O eighteen levels were iden...

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Bibliographic Details
Main Author: Valdir Guimaraes
Other Authors: Narayanarao Madhavarao
Language:Portuguese
Published: Universidade de São Paulo 1994
Subjects:
Online Access:http://www.teses.usp.br/teses/disponiveis/43/43131/tde-05122013-110123/
id ndltd-IBICT-oai-teses.usp.br-tde-05122013-110123
record_format oai_dc
collection NDLTD
language Portuguese
sources NDLTD
topic Alvo gasoso
Estrutura nuclear
Reação de transferência de cluster
Simetria de isospin
Gas target
Isospin symmetry
Nuclear structure
Transfer reaction cluster
spellingShingle Alvo gasoso
Estrutura nuclear
Reação de transferência de cluster
Simetria de isospin
Gas target
Isospin symmetry
Nuclear structure
Transfer reaction cluster
Valdir Guimaraes
Estudo da Estrutura dos Núcleos 17Ne e 13O pela reação de pick-up (3He, 6He)
description The nuclear structme of 17Ne and 13O has been studied by the 20Ne(3He,6He)17Ne and 16O(3He,6He)13O reactions at 70 MeV and 80 MeV, respectively. Fifteen levels were identified, and angular distributions have been measured for nine of these levels in 17Ne, while for 13O eighteen levels were identified, but angular distributions were obtained for only ten levels. The observed transferred angular momentum dependence of these angular distributions allowed spin-parity assignments. The T= 3/2 quartet analog states in mass A=17 have been completed for six levels. The results of the isobaric multiplet mass equation analysis show a slight linear dependence of the b and c coefficients on the excitation energy. It was found that the coefficients for the positive parity states do not follow the systematics of the negative parity states. The absolute values of the b and c coefficients are larger for the positive parity states. An analysis in terms of Coulomb energy displacement indicates a possible configuration mixing or core polarization effect in these states. The d coefficient also has a large deviation from zero, only for the positive parity states indicating a possible expansion of the radial wavefunction or some isospin symmetry breaking effects. Further detailed theoretical interpretation of these effects may bring valuable information about the configuration and structure of these states. The leveis in 13O were measured with good energy resolution, and thus, it was possible to identify the first excited state unambiguously. However, if one identifies this state as the analog of the known first excited state in the mirror nucleus 13B, this leads to one of the largest level shifts known in literature. === The nuclear structme of 17Ne and 13O has been studied by the 20Ne(3He,6He)17Ne and 16O(3He,6He)13O reactions at 70 MeV and 80 MeV, respectively. Fifteen levels were identified, and angular distributions have been measured for nine of these levels in 17Ne, while for 13O eighteen levels were identified, but angular distributions were obtained for only ten levels. The observed transferred angular momentum dependence of these angular distributions allowed spin-parity assignments. The T= 3/2 quartet analog states in mass A=17 have been completed for six levels. The results of the isobaric multiplet mass equation analysis show a slight linear dependence of the b and c coefficients on the excitation energy. It was found that the coefficients for the positive parity states do not follow the systematics of the negative parity states. The absolute values of the b and c coefficients are larger for the positive parity states. An analysis in terms of Coulomb energy displacement indicates a possible configuration mixing or core polarization effect in these states. The d coefficient also has a large deviation from zero, only for the positive parity states indicating a possible expansion of the radial wavefunction or some isospin symmetry breaking effects. Further detailed theoretical interpretation of these effects may bring valuable information about the configuration and structure of these states. The leveis in 13O were measured with good energy resolution, and thus, it was possible to identify the first excited state unambiguously. However, if one identifies this state as the analog of the known first excited state in the mirror nucleus 13B, this leads to one of the largest level shifts known in literature.
author2 Narayanarao Madhavarao
author_facet Narayanarao Madhavarao
Valdir Guimaraes
author Valdir Guimaraes
author_sort Valdir Guimaraes
title Estudo da Estrutura dos Núcleos 17Ne e 13O pela reação de pick-up (3He, 6He)
title_short Estudo da Estrutura dos Núcleos 17Ne e 13O pela reação de pick-up (3He, 6He)
title_full Estudo da Estrutura dos Núcleos 17Ne e 13O pela reação de pick-up (3He, 6He)
title_fullStr Estudo da Estrutura dos Núcleos 17Ne e 13O pela reação de pick-up (3He, 6He)
title_full_unstemmed Estudo da Estrutura dos Núcleos 17Ne e 13O pela reação de pick-up (3He, 6He)
title_sort estudo da estrutura dos núcleos 17ne e 13o pela reação de pick-up (3he, 6he)
publisher Universidade de São Paulo
publishDate 1994
url http://www.teses.usp.br/teses/disponiveis/43/43131/tde-05122013-110123/
work_keys_str_mv AT valdirguimaraes estudodaestruturadosnucleos17nee13opelareacaodepickup3he6he
AT valdirguimaraes astudyofthenuclearstructureofnuclei17neand13obythepickupreaction3he6he
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spelling ndltd-IBICT-oai-teses.usp.br-tde-05122013-1101232019-01-21T23:34:42Z Estudo da Estrutura dos Núcleos 17Ne e 13O pela reação de pick-up (3He, 6He) A study of the nuclear structure of nuclei 17Ne and 13O by the pickup reaction (3HE, 6HE) Valdir Guimaraes Narayanarao Madhavarao Raul Donangelo Paulo Roberto Silveira Gomes Emerson Jose Veloso de Passos Alejandro Szanto de Toledo Alvo gasoso Estrutura nuclear Reação de transferência de cluster Simetria de isospin Gas target Isospin symmetry Nuclear structure Transfer reaction cluster The nuclear structme of 17Ne and 13O has been studied by the 20Ne(3He,6He)17Ne and 16O(3He,6He)13O reactions at 70 MeV and 80 MeV, respectively. Fifteen levels were identified, and angular distributions have been measured for nine of these levels in 17Ne, while for 13O eighteen levels were identified, but angular distributions were obtained for only ten levels. The observed transferred angular momentum dependence of these angular distributions allowed spin-parity assignments. The T= 3/2 quartet analog states in mass A=17 have been completed for six levels. The results of the isobaric multiplet mass equation analysis show a slight linear dependence of the b and c coefficients on the excitation energy. It was found that the coefficients for the positive parity states do not follow the systematics of the negative parity states. The absolute values of the b and c coefficients are larger for the positive parity states. An analysis in terms of Coulomb energy displacement indicates a possible configuration mixing or core polarization effect in these states. The d coefficient also has a large deviation from zero, only for the positive parity states indicating a possible expansion of the radial wavefunction or some isospin symmetry breaking effects. Further detailed theoretical interpretation of these effects may bring valuable information about the configuration and structure of these states. The leveis in 13O were measured with good energy resolution, and thus, it was possible to identify the first excited state unambiguously. However, if one identifies this state as the analog of the known first excited state in the mirror nucleus 13B, this leads to one of the largest level shifts known in literature. The nuclear structme of 17Ne and 13O has been studied by the 20Ne(3He,6He)17Ne and 16O(3He,6He)13O reactions at 70 MeV and 80 MeV, respectively. Fifteen levels were identified, and angular distributions have been measured for nine of these levels in 17Ne, while for 13O eighteen levels were identified, but angular distributions were obtained for only ten levels. The observed transferred angular momentum dependence of these angular distributions allowed spin-parity assignments. The T= 3/2 quartet analog states in mass A=17 have been completed for six levels. The results of the isobaric multiplet mass equation analysis show a slight linear dependence of the b and c coefficients on the excitation energy. It was found that the coefficients for the positive parity states do not follow the systematics of the negative parity states. The absolute values of the b and c coefficients are larger for the positive parity states. An analysis in terms of Coulomb energy displacement indicates a possible configuration mixing or core polarization effect in these states. The d coefficient also has a large deviation from zero, only for the positive parity states indicating a possible expansion of the radial wavefunction or some isospin symmetry breaking effects. Further detailed theoretical interpretation of these effects may bring valuable information about the configuration and structure of these states. The leveis in 13O were measured with good energy resolution, and thus, it was possible to identify the first excited state unambiguously. However, if one identifies this state as the analog of the known first excited state in the mirror nucleus 13B, this leads to one of the largest level shifts known in literature. 1994-02-23 info:eu-repo/semantics/publishedVersion info:eu-repo/semantics/doctoralThesis http://www.teses.usp.br/teses/disponiveis/43/43131/tde-05122013-110123/ por info:eu-repo/semantics/openAccess Universidade de São Paulo Física USP BR reponame:Biblioteca Digital de Teses e Dissertações da USP instname:Universidade de São Paulo instacron:USP