Abstract

A microscopic form factor for the process 6Li → α + d is derived by summing a realistic nucleon-nucleon interaction between the nucleons in the alpha and deuteron clusters within a fully antisymmetrized 6Li wave function and integrating over the internal coordinates of the clusters. The form factor is employed in finite-range DWBA calculations of the ( 6Li, d) and (d, 6Li) reactions and in general provides a good description of the shapes of the angular distributions. However, the spectroscopic factors for ( 6Li, d), (d, 6Li), and those calculated from the shell model are in poor agreement.

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