Systematic CDCC calculations for 11Be + p elastic scattering
Continuum discretised coupled-channels (CDCC) method with a 10Be(0+) + n two-body cluster model is applied to systematically analyze the elastic scattering of the halo nucleus alBe from the proton target at various incident energies below 100 MeV/nucleon. Using the renormalized 10Be-p potential dedu...
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Published in: | Science China. Physics, mechanics & astronomy Vol. 59; no. 3; pp. 70 - 74 |
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Main Authors: | , , , |
Format: | Journal Article |
Language: | English |
Published: |
Beijing
Science China Press
01-03-2016
Springer Nature B.V |
Subjects: | |
Online Access: | Get full text |
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Summary: | Continuum discretised coupled-channels (CDCC) method with a 10Be(0+) + n two-body cluster model is applied to systematically analyze the elastic scattering of the halo nucleus alBe from the proton target at various incident energies below 100 MeV/nucleon. Using the renormalized 10Be-p potential deduced from the 10Be + p elastic scattering data, the differential cross sections of 11 Be + p scattering are well reproduced by the CDCC calculations without any further adjustment parameters, demonstrating the applicability of this approach for describing the scattering of exotic nuclei based on the scattering of the less exotic core nuclei. |
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Bibliography: | 11-5849/N Continuum discretised coupled-channels (CDCC) method with a 10Be(0+) + n two-body cluster model is applied to systematically analyze the elastic scattering of the halo nucleus alBe from the proton target at various incident energies below 100 MeV/nucleon. Using the renormalized 10Be-p potential deduced from the 10Be + p elastic scattering data, the differential cross sections of 11 Be + p scattering are well reproduced by the CDCC calculations without any further adjustment parameters, demonstrating the applicability of this approach for describing the scattering of exotic nuclei based on the scattering of the less exotic core nuclei. elastic scattering, CDCC, 11Be |
ISSN: | 1674-7348 1869-1927 |
DOI: | 10.1007/s11433-015-5771-7 |