<p>Analysis of proton transfer reactions between <sup>11</sup>B and <sup>12</sup>C nuclei induced by the lightest projectiles (<i>p</i>, <i>d</i>, <sup>3</sup>He) is carried out within the Modified Distorted-Wave Method and the Asymptotic Normalization Coefficients values for proton-bound states are extracted. All available literature data suitable for analysis were considered, including new experimental differential cross sections for the <sup>11</sup>B(<sup>3</sup>He, <i>d</i>)<sup>12</sup>C reaction at <i>E</i><sup>3</sup><sub>He</sub> = 22.3 and 32.5&#xa0;MeV, populating <sup>12</sup>C states at 10.84, 11.83, and 14.08&#xa0;MeV. The degree of peripherality of the single-step proton transfer is estimated as a function of its binding energy as well as the reaction type, and the uncertainties of the corresponding ANC squared values to date are established.</p>

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Asymptotic Normalization Coefficients for Proton Coupling in 12C

  • S. V. Artemov,
  • I. Ya. Son,
  • O. R. Tojiboev,
  • F. Kh. Ergashev,
  • S. B. Igamov,
  • A. A. Karakhodzhaev,
  • M. O. Tukhtasinova

摘要

Analysis of proton transfer reactions between 11B and 12C nuclei induced by the lightest projectiles (p, d, 3He) is carried out within the Modified Distorted-Wave Method and the Asymptotic Normalization Coefficients values for proton-bound states are extracted. All available literature data suitable for analysis were considered, including new experimental differential cross sections for the 11B(3He, d)12C reaction at E3He = 22.3 and 32.5 MeV, populating 12C states at 10.84, 11.83, and 14.08 MeV. The degree of peripherality of the single-step proton transfer is estimated as a function of its binding energy as well as the reaction type, and the uncertainties of the corresponding ANC squared values to date are established.