High precision $^{89}$Y($\alpha$,$\alpha$)$^{89}$Y scattering at low energies
G. G. Kiss, P. Mohr, Zs. F\"ul\"op, D.Galaviz, Gy.Gy\"urky, Z. Elekes,, E. Somorjai, A. Kretschmer, K. Sonnabend, A. Zilges, and M.Avrigeanu

TL;DR
This study measures high-precision elastic scattering cross sections of $^{89}$Y with alpha particles at low energies to evaluate local and global nuclear potentials and investigates alpha-cluster states in $^{93}$Nb.
Contribution
It provides new high-precision scattering data for $^{89}$Y and assesses the accuracy of global and regional alpha-nucleus potentials, also exploring alpha-cluster states in $^{93}$Nb.
Findings
Derived a local potential for $^{89}$Y($ abla$,$ abla$)$^{89}$Y scattering.
Compared experimental data with global and regional potentials, highlighting discrepancies.
Identified alpha-cluster states in $^{93}$Nb.
Abstract
Elastic scattering cross sections of the Y(,)Y reaction have been measured at energies E = 15.51 and 18.63 MeV. The high precision data for the semi-magic nucleus Y are used to derive a local potential and to evaluate the predictions of global and regional -nucleus potentials. The variation of the elastic alpha scattering cross sections along the isotonic chain is investigated by a study of the ratios of angular distributions for Y(,)Y and Mo(,)Mo at E 15.51 and 18.63 MeV. This ratio is a very sensitive probe at energies close to the Coulomb barrier, where scattering data alone is usually not enough to characterize the different potentials. Furthermore, -cluster states in Nb = Y are investigated.
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