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arXiv · 1705.05611

Re-examining the $^{26}$Mg($α,α^\prime$)$^{26}$Mg reaction - probing astrophysically important states in $^{26}$Mg

Abstract

Background: The $^{22}$Ne($α,n$)$^{25}$Mg reaction is one of the neutron sources for the $s$-process in massive stars. The properties of levels in $^{26}$Mg above the $α$-particle threshold control the strengths of the $^{22}$Ne($α,n$)$^{25}$Mg and $^{22}$Ne($α,γ$)$^{26}$Mg reactions. The strengths of these reactions as functions of temperature are one of the major uncertainties in the $s$-process. Methods: Inelastically scattered $α$ particles from a $^{26}$Mg target were momentum-analysed in the K600 magnetic spectrometer at iThemba LABS, South Africa. The differential cross sections of states were deduced from the focal-plane trajectory of the scattered $α$ particles. Based on the differential cross sections, spin and parity assignments to states are made. Results: A new $0^+$ state was observed in addition to a number of other states, some of which can be associated with states observed in other experiments. Some of the deduced $J^π$ values of the states observed in the present study show discrepancies with those assigned in an experiment performed at RCNP Osaka. Conclusion: The high level density at this excitation energy in $^{26}$Mg makes assigning $J^π$ values to observed states difficult. Further experimental investigations with superior experimental energy resolution are required to clarify the number of levels in $^{26}$Mg, especially between the $α$-particle threshold at 10.615 MeV and the neutron threshold at 11.319 MeV.

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BibTeXRIS

P. Adsley, J. W. Brümmer, K. C. W. Li, D. J. Marín-Lámbarri, N. Y. Kheswa, L. M. Donaldson, R. Neveling, P. Papka, L. Pellegri, V. Pesudo, L. C. Pool, F. D. Smit, J. J. van Zyl. 2017-10-21. Re-examining the $^{26}$Mg($α,α^\prime$)$^{26}$Mg reaction - probing astrophysically important states in $^{26}$Mg. https://doi.org/10.1103/physrevc.96.055802

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