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arXiv:1909.07012·v1·Nuclear Experiment

Constraining the C+C astrophysical S-factors with the C+C measurements at very low energies

N.T. Zhang · X.Y. Wang · H. Chen · Z.J. Chen · W.P. Lin · W.Y. Xin · S.W. Xu · D. Tudor · A.I. Chilug · I.C. Stefanescu · M. Straticiuc · I. Burducea

Abstract

We use an underground counting lab with an extremely low background to perform an activity measurement for the C+C system with energies down to =2.323 MeV, at which the C(C,)Na cross section is found to be 0.22(7) nb. The C+C fusion cross section is derived with a statistical model calibrated using experimental data. Our new result of the C+C fusion cross section is the first decisive evidence in the carbon isotope systems which rules out the existence of the astrophysical S-factor maximum predicted by the phenomenological hindrance model, while confirming the rising trend of the S-factor towards lower energies predicted by other models, such as CC-M3Y+Rep, DC-TDHF, KNS, SPP and ESW. After normalizing the model predictions with our data, a more reliable upper limit is established for the C+C fusion cross sections at stellar energies.

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