States of $^{12}$N with enhanced radii.

@article{Demyanova2020StatesO,
  title={States of \$^\{12\}\$N with enhanced radii.},
  author={A. S. Demyanova and A. N. Danilov and Alexei A. Ogloblin and V. I. Starastsin and Sergey V. Dmitriev and Wladyslaw Henryk Trzaska and Sergey A. Goncharov and T. L. Belyaeva and Vladislav A. Maslov and Yu. G. Sobolev and Yu. E. Penionzhkevich and Sergey V. Khlebnikov and G. P. Tyurin and N. T. Burtebaev and D. M. Janseitov and Yu. B. Gurov and J. Louko and Viktor M. Sergeev},
  journal={arXiv: Nuclear Experiment},
  year={2020}
}
The differential cross sections of the $^{12}$C($^3$He,t)$^{12}$N reaction leading to formation of the 1$^+$ (ground state), 2$^+$(0.96 MeV), 2$^{-}$(1.19 MeV), and 1$^{-}$(1.80 MeV) states of $^{12}$N are measured at $E$($^3$He)=40 MeV. The analysis of the data is carried out within the modified diffraction model (MDM) and distorted wave Born approximation (DWBA). Enhanced $rms$ radii were obtained for the ground, 2$^{-}$(1.19 MeV), and 1$^{-}$(1.80 MeV) states. We revealed that $^{12}$B… Expand
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