4.7 Article

Constraining the 12C+12C astrophysical S-factors with the 12C+13C measurements at very low energies

期刊

PHYSICS LETTERS B
卷 801, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.physletb.2019.135170

关键词

Fusion cross section; Astrophysical S-factor; Extrapolation models; Hindrance

资金

  1. National Key Research and Development Program from the Ministry of Science and Technology of China [MOST 2016YFA0400501]
  2. Romanian Ministry for Research and Innovation [PN 16420102, PN-III-P4-ID-PCE-2016-0743 NUCASTRO2]
  3. National Natural Science Foundation of China [11021504, 11321064, 11475228, 11490564, 11405226]
  4. 100 talents Program of the Chinese Academy of Sciences
  5. U.S. DOE [DE-AC07-05ID14517, DE-SC0013847]
  6. [XDPB09-2]

向作者/读者索取更多资源

We use an underground counting lab with an extremely low background to perform an activity measurement for the C-12+C-13 system with energies down to E-c.m. = 2.323 MeV, at which the C-12(C-13, p)Na-24 cross section is found to be 0.22(7) nb. The C-12+C-13 fusion cross section is derived with a statistical model calibrated using experimental data. Our new result of the C-12+C-13 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-12+C-12 fusion cross sections at stellar energies. (C) 2019 The Author(s). Published by Elsevier B.V.

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