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The 12C + α reaction rate from the elastic 16O breakup

✍ Scribed by J. Kiener; V. Tatischeff; P. Aguer; G. Bogaert; A. Coc; D. Disdier; L. Kraus; A. Lefebvre; I. Linck; W. Mittig; T. Motobayashi; F. de Oliveira-Santos; P. Roussel-Chomaz; C. Stephan; J.P. Thibaud


Publisher
Elsevier Science
Year
1997
Tongue
English
Weight
241 KB
Volume
621
Category
Article
ISSN
0375-9474

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✦ Synopsis


Evidence for direct elastic breakup of 160 into the c~-12C continuum with relative energies ranging from 900 to 1800 keV has been obtained in the scattering of 1527 MeV 160 projectiles off 2°8pb. An interpretation of E2 breakup including nuclear and Coulomb contributions leads to reduced electromagnetic transitions probabilities and astrophysical SE2 factors in reasonable agreement with direct measurements, showing that the method can be applied to extract the E2 part of the 12C(a, 3,) reaction rate.


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The 12C(16O,12C 12C)α reaction at Ebeam=
✍ M. Freer; M.P. Nicoli; N.M. Clarke; B.R. Fulton; G.R. Kelly; J.T. Murgatroyd; S. 📂 Article 📅 2001 🏛 Elsevier Science 🌐 English ⚖ 378 KB

The 12 C( 16 O, 12 C 12 C)α reaction has been measured at E beam = 75 MeV, for 24 Mg emission from 0 to 180 degrees. This energy coincides with an enhancement observed in earlier measurements of the 12 C + 16 O system. The properties of the angular correlations of the reaction products are found to