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Proton single-particle strength in {19}F measured via the {18}O(d,n) reaction

Terakawa A., Orihara H., Oura M., Hosaka M., Suzuki H., Kumagai K., Kikuchi Y., Tohei T., Nakagawa T., Takamatsu J., Narita A., Hosomi K., Ishii K., Jon G. C., Miura K., Ohnuma H.

Phys. Rev. C: Nucl. Phys., vol: 66, num: 6, 24(7), published: , US


   Atomic nucleus.
      Basic nuclear properties. Properties of particular nuclei.
         Properties of particular nuclei (experiment).
            Z=9÷12.

   Atomic nucleus.
      Nuclear reactions.
         Nuclear reactions induced by 2H, 3H, 3He and α-particles (experiment).
            Deuteron-nucleus interactions at E≤ 200 MeV.
               (d, n) reactions.

   Atomic nucleus.
      Nuclear structure.
         Shell model.
            Other topics.

   Atomic nucleus.
      Basic nuclear properties. Properties of particular nuclei.
         Basic nuclear properties (theory).
            Other topics.

   Atomic nucleus.
      Nuclear structure.
         Shell model.
            Properties of single-particle shell-model states in spherical nuclei.

   Atomic nucleus.
      Nuclear reactions.
         Nuclear reactions induced by 2H, 3H, 3He and α particles (theory).
            One-nucleon transfer reactions: (d, N), (d, t), (d, 3He), (t, d), (3He, d), (t, α), (3He, α), (α, t), (α, 3He); two-nucleon transfer react
               (d, N) reactions (A≤40).

   Atomic nucleus.
      Nuclear reactions.
         Nuclear reactions induced by 2H, 3H, 3He and α particles (theory).
            One-nucleon transfer reactions: (d, N), (d, t), (d, 3He), (t, d), (3He, d), (t, α), (3He, α), (α, t), (α, 3He); two-nucleon transfer react
               Distorted wave Born approximation ((d, n) reactions).

   Atomic nucleus.
      Nuclear structure.
         Shell model.
            Shell model calculations (16 <A≤40).

   Atomic nucleus.
      Basic nuclear properties. Properties of particular nuclei.
         Properties of particular nuclei (theory).
            Z=9÷12.

   Nuclear reactor physics.
      Neutron physics. Nuclear data.
         Other reactions: (γ, n), (n, 2n) etc.

   Nuclear reactor physics.
      Nuclear power. Reliability and safety problems. Engineering problems.
         Nuclear energy and radiation utilization. Description and parameters of reactors, nuclear power stations and other nuclear installations.
            Electro-nuclear installations (nuclear fuel and radioactive wastes treatment, power production, isotopes production, etc.).