$\alpha$-scattering and $\alpha$-induced reaction cross sections of $^{64}$Zn at low energies
A. Ornelas, P. Mohr, Gy. Gy\"urky, Z. Elekes, Zs. F\"ul\"op, Z., Hal\'asz, G.G. Kiss, E. Somorjai, T. Sz\"ucs, M. P. Tak\'acs, D. Galaviz, R., T. G\"uray, Z. Korkulu, N. \"Ozkan, C. Yal\c{c}{\i}n

TL;DR
This study measures alpha-induced reaction cross sections on 64Zn at low energies, confirming the consistency between elastic scattering data and reaction channels, and validating the use of statistical models for such calculations.
Contribution
First experimental confirmation that elastic scattering cross sections match the sum of all non-elastic channels for 64Zn at low energies, supporting statistical model reliability.
Findings
Elastic scattering and reaction cross sections agree within uncertainties.
Compound-inelastic scattering significantly contributes at 16.1 MeV.
Recent global potentials describe 64Zn reactions well near the Coulomb barrier.
Abstract
Background: alpha-nucleus potentials play an essential role for the calculation of alpha-induced reaction cross sections at low energies in the statistical model... Purpose: The present work studies the total reaction cross section sigma_reac of alpha-induced reactions at low energies which can be determined from the elastic scattering angular distribution or from the sum over the cross sections of all open non-elastic channels. Method: Elastic and inelastic 64Zn(a,a)64Zn angular distributions were measured at two energies around the Coulomb barrier at 12.1 MeV and 16.1 MeV. Reaction cross sections of the (a,g), (a,n), and (a,p) reactions were measured at the same energies using the activation technique. The contributions of missing non-elastic channels were estimated from statistical model calculations. Results: The total reaction cross sections from elastic scattering and from…
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