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Study of $^{10}$Li via the $^{9}$Li($^{2}$H, p) reaction at REX-ISOLDE
The $^{9}$Li+$^{2}$H reaction has been investigated at 2.36 MeV/u at the REX-ISOLDE facility. In this paper we focus on the $^{10}$Li+p channel which potentially holds spectroscopic information on the unbound nucleus $^{10}$Li. The experimental excitation function and angular distribution are compar...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2006
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1016/j.physletb.2006.09.060 http://cds.cern.ch/record/947994 |
_version_ | 1780909953639251968 |
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author | Jeppesen, H B Moro, A M Bergmann, U C García-Borge, M J Cederkäll, J Fraile-Prieto, L M Fynbo, H O U Gómez-Camacho, J Johansson, H T Jonson, B Meister, M Nilsson, T Nyman, G H Pantea, M Riisager, K Richter, A Schrieder, G Sieber, T Tenblad, O Tengborn, E Turrión, M Wenander, F |
author_facet | Jeppesen, H B Moro, A M Bergmann, U C García-Borge, M J Cederkäll, J Fraile-Prieto, L M Fynbo, H O U Gómez-Camacho, J Johansson, H T Jonson, B Meister, M Nilsson, T Nyman, G H Pantea, M Riisager, K Richter, A Schrieder, G Sieber, T Tenblad, O Tengborn, E Turrión, M Wenander, F |
author_sort | Jeppesen, H B |
collection | CERN |
description | The $^{9}$Li+$^{2}$H reaction has been investigated at 2.36 MeV/u at the REX-ISOLDE facility. In this paper we focus on the $^{10}$Li+p channel which potentially holds spectroscopic information on the unbound nucleus $^{10}$Li. The experimental excitation function and angular distribution are compared with CCBA calculations. These calculations clearly support the existence of a low-lying (s) virtual state, with a (negative) scattering length of the order a$_{s}\sim$13-24 fm and a p$_{1/2}$ resonance with an energy of E$_{res}\simeq$ 0.38 MeV and a width of $\Gamma\simeq$ 0.2 MeV. |
id | cern-947994 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2006 |
record_format | invenio |
spelling | cern-9479942019-09-30T06:29:59Zdoi:10.1016/j.physletb.2006.09.060http://cds.cern.ch/record/947994engJeppesen, H BMoro, A MBergmann, U CGarcía-Borge, M JCederkäll, JFraile-Prieto, L MFynbo, H O UGómez-Camacho, JJohansson, H TJonson, BMeister, MNilsson, TNyman, G HPantea, MRiisager, KRichter, ASchrieder, GSieber, TTenblad, OTengborn, ETurrión, MWenander, FStudy of $^{10}$Li via the $^{9}$Li($^{2}$H, p) reaction at REX-ISOLDEParticle Physics - ExperimentThe $^{9}$Li+$^{2}$H reaction has been investigated at 2.36 MeV/u at the REX-ISOLDE facility. In this paper we focus on the $^{10}$Li+p channel which potentially holds spectroscopic information on the unbound nucleus $^{10}$Li. The experimental excitation function and angular distribution are compared with CCBA calculations. These calculations clearly support the existence of a low-lying (s) virtual state, with a (negative) scattering length of the order a$_{s}\sim$13-24 fm and a p$_{1/2}$ resonance with an energy of E$_{res}\simeq$ 0.38 MeV and a width of $\Gamma\simeq$ 0.2 MeV.CERN-PH-EP-2006-010oai:cds.cern.ch:9479942006-05-08 |
spellingShingle | Particle Physics - Experiment Jeppesen, H B Moro, A M Bergmann, U C García-Borge, M J Cederkäll, J Fraile-Prieto, L M Fynbo, H O U Gómez-Camacho, J Johansson, H T Jonson, B Meister, M Nilsson, T Nyman, G H Pantea, M Riisager, K Richter, A Schrieder, G Sieber, T Tenblad, O Tengborn, E Turrión, M Wenander, F Study of $^{10}$Li via the $^{9}$Li($^{2}$H, p) reaction at REX-ISOLDE |
title | Study of $^{10}$Li via the $^{9}$Li($^{2}$H, p) reaction at REX-ISOLDE |
title_full | Study of $^{10}$Li via the $^{9}$Li($^{2}$H, p) reaction at REX-ISOLDE |
title_fullStr | Study of $^{10}$Li via the $^{9}$Li($^{2}$H, p) reaction at REX-ISOLDE |
title_full_unstemmed | Study of $^{10}$Li via the $^{9}$Li($^{2}$H, p) reaction at REX-ISOLDE |
title_short | Study of $^{10}$Li via the $^{9}$Li($^{2}$H, p) reaction at REX-ISOLDE |
title_sort | study of $^{10}$li via the $^{9}$li($^{2}$h, p) reaction at rex-isolde |
topic | Particle Physics - Experiment |
url | https://dx.doi.org/10.1016/j.physletb.2006.09.060 http://cds.cern.ch/record/947994 |
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