Structure of low-lying 12C resonances

R Álvarez-Rodrıguez, E Garrido, AS Jensen… - The European Physical …, 2007 - Springer
R Álvarez-Rodrıguez, E Garrido, AS Jensen, DV Fedorov, HOU Fynbo
The European Physical Journal A, 2007Springer
The hyperspherical adiabatic expansion is combined with complex scaling and used to
calculate low-lying nuclear resonances of 12 C in the 3 α model. We use Ali-Bodmer
potentials and compare results for other potentials α-α with similar 8 Be properties. A three-
body potential is used to adjust the 12 C resonance positions to desired values extending
the applicability of the method to many-body systems decaying into three α-particles. For
natural choices of three-body potentials we find 14 resonances below the proton separation …
Abstract
The hyperspherical adiabatic expansion is combined with complex scaling and used to calculate low-lying nuclear resonances of 12C in the 3α model. We use Ali-Bodmer potentials and compare results for other potentials α-α with similar 8Be properties. A three-body potential is used to adjust the 12C resonance positions to desired values extending the applicability of the method to many-body systems decaying into three α-particles. For natural choices of three-body potentials we find 14 resonances below the proton separation threshold, i.e. two 0+, three 2+, two 4+, one of each of 1±, 2-, 3±, 4-, and 6+. The partial-wave decomposition of each resonance is calculated as a function of the hyperradius. Strong variation is found from small to large distance. The connection to previous experimental and theoretical results is discussed and agreements as well as disagreements are emphasized.
Springer
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