Abstract

Single-particle states in [sup 41]Ca have been investigated through the Ca([ital [rvec d]],[ital p])[sup 41]Ca reaction with polarized deuterons of [ital E][sub [ital d]]=56 MeV. Angular distributions of differential cross sections and vector analyzing powers were measured for 91 transitions up to 9.7-MeV excitation energy by using a magnetic spectrograph. Analyses of these data were performed to determine [ital j][sup [pi]] and [ital C][sup 2][ital S] of single-particle levels with zero-range distorted-wave Born approximation calculations using the adiabatic approximation. The occupation probabilities and the single-particle energies in [sup 40]Ca were extracted for the valence (2[ital p][minus]1[ital f]) and (2[ital s][minus]1[ital d]) shells with including previous ([ital p],[ital d]) data. The results on these quantities show good agreement with theoretical expectations.

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