Abstract

The 26 Mg(d, p) 27 Mg neutron stripping reaction has been studied at 3.1 and 3.5 MeV. Product protons corresponding to levels up to 4.8 MeV in 27 Mg were analysed with the broad range magnetic spectrograph with peak widths of ∼7 keV (FWHM) at eight angles from θ=15° to θ=120°. Cross sections are analysed using the DWBA theory and the statistical theory of Hauser and Feshbach. The angular momentum transfers l n are determined undoubtfully. The spectroscopic factors for respective states are then compared with the shell model calculations of Wildenthal et al. and the predictions of the collective model.

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