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REACTION MECHANISM STUDIES ON Si$sup 28$(d,p)Si$sup 29$. I. DISTORTED WAVE EFFECTS

Journal Article · · Nuclear Phys.
A study of the (p, gamma ) angular correlations involving the 1.28- and 2.03-Mev states in Si/sup 29/ populated by the Sl/sup 28/(d,p)Si/sup 29/ reaction was carried out for deuteron energies in the range from 6 to 9 Mev. In each case measurements were carried out in the (d,p) reaction plane with protons detected on the observed peak of the l/sub n/ = 2 stripping angular correlation. These data were analyzed within the framework of distorted-wave stripping formalism. The measurements on the 2.03-Mev state alone enabled the sta tistical tensors for the reaction to be determined for each incident deuteron energy. These statistical tensors were then used to compute the angular correlation of the 1.28Mev- radiation, yielding results in good agreement with the experimental measuremenis and thus supporing the expectation that the matrix elements are essentially independent of the detailed nuclear structure of the final state. The statistical tensors were also used to predict the general (p, ) angular currelation function over the sphere as well as the magnitude of the proion polarization for the Si/sup 29*/ -proton systems involving both the l.28-Mev and 2.O3-Mev excited states. (auth)
Research Organization:
Atomic Energy of Canada Ltd., Chalk River, Ont.
NSA Number:
NSA-15-008011
OSTI ID:
4113329
Journal Information:
Nuclear Phys., Journal Name: Nuclear Phys. Vol. Vol: 19
Country of Publication:
Country unknown/Code not available
Language:
English

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