The Zr-91((p) over right arrow, alpha)Y-88 reaction has been studied at incident energy of 22 MeV using a polarized proton source and a Q3D spectrometer. The differential cross sections and asymmetries for transitions to levels of Y-88 homologous to the lowest excitation energy states of Y-87 have been measured and interpreted both in terms of the experimental differential cross sections and asymmetries of the parent Y-87 states and by means of the finite-range distorted wave Born approximation theory using conventional Woods-Saxon alpha-particle potential. The advantage of the concept of homology consists in having to deal with a unique l-transfer, that given by the transition to the corresponding parent state. In order to validate the concept of homology as a spectroscopic tool to identify spin, parity and dominant configuration of highly excited states in ((p) over right arrow, alpha) reaction on odd mass target nuclei, shell model calculations have been performed. Several new attributions of spin and parity for Y-88 residual nucleus are proposed.

Spectroscopy of Y-88 homologous levels

VITTURI, ANDREA;
1997

Abstract

The Zr-91((p) over right arrow, alpha)Y-88 reaction has been studied at incident energy of 22 MeV using a polarized proton source and a Q3D spectrometer. The differential cross sections and asymmetries for transitions to levels of Y-88 homologous to the lowest excitation energy states of Y-87 have been measured and interpreted both in terms of the experimental differential cross sections and asymmetries of the parent Y-87 states and by means of the finite-range distorted wave Born approximation theory using conventional Woods-Saxon alpha-particle potential. The advantage of the concept of homology consists in having to deal with a unique l-transfer, that given by the transition to the corresponding parent state. In order to validate the concept of homology as a spectroscopic tool to identify spin, parity and dominant configuration of highly excited states in ((p) over right arrow, alpha) reaction on odd mass target nuclei, shell model calculations have been performed. Several new attributions of spin and parity for Y-88 residual nucleus are proposed.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11577/2496977
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