Clusters as Subsystems in Light Nuclei 1983
DOI: 10.1007/978-3-663-14197-6_1
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Clusters as Subsystems in Light Nuclei

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Cited by 19 publications
(16 citation statements)
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“…[68][69][70] is used here for the calculations of both the bound state radial wave function ϕ nl B j B (r αt ) and the scattering wave function ψ l αt j αt (r αt ). It should be emphasized that the choice of this potential is based on the following considerations.…”
Section: Connection Between Nuclear Vertex Constant For the Virtual Dmentioning
confidence: 99%
“…[68][69][70] is used here for the calculations of both the bound state radial wave function ϕ nl B j B (r αt ) and the scattering wave function ψ l αt j αt (r αt ). It should be emphasized that the choice of this potential is based on the following considerations.…”
Section: Connection Between Nuclear Vertex Constant For the Virtual Dmentioning
confidence: 99%
“…It is already well known that clustering structures [23][24][25][26][27] appear in the ground states of ordinary light nuclei with N ≈ Z as seen in the t + α cluster structure of 7 Li and in the α + α cluster structure of 8 Be, and in the 16 O+α cluster structure of 20 Ne. Therefore, in light unstable nuclei one of the problems to be solved is the clustering structure.…”
Section: Introductionmentioning
confidence: 99%
“…The potential model is fairly simple to use, and has been applied to many reactions in low-energy nuclear physics [37,12,38,39,40]. The basic assumptions of the potential model are: (i) the nucleon-nucleon interaction is replaced by a nucleus-nucleus force V (ρ), which depends on the relative coordinate ρ only; (ii) the wave functions of the unified nucleus can be described by a cluster structure with A 1 + A 2 nucleons; (iii) the internal structure of the nuclei does not play any role.…”
Section: The Potential Modelmentioning
confidence: 99%