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N = 82 Shell Quenching of the Classical r-Process "Waiting-Point" Nucleus {130}Cd

Dillmann I., Kratz K.-L., Wohr A., Arndt O., Brown B. A., Hoff P., Hjorth-Jensen M., Koster U., Ostrowski A. N., Pfeiffer B., Seweryniak D., Shergur J., Collaboration W. B. Walters the ISOLDE

Phys. Rev. Lett., vol: 91, num: 16, (162503), published: , US


   Atomic nucleus.
      Nuclear astrophysics. Nuclear interactions of cosmic rays.
         Synthesis of elements. Nuclear abundance.

   Atomic nucleus.
      Nuclear astrophysics. Nuclear interactions of cosmic rays.
         Nuclear reactions in stars and stellar evolution.

   Atomic nucleus.
      Basic nuclear properties. Properties of particular nuclei.
         Properties of particular nuclei (experiment).
            Z=47÷53.

   Atomic nucleus.
      Nuclear fission.
         Fission induced by neutrons (experiment).
            Fission induced by intermediate and fast neutrons.

   Atomic nucleus.
      Radioactive decay.
         Electromagnetic transitions in nuclei (experiment).
            Electromagnetic transition rates in nuclei (90<A≤150).

   Atomic nucleus.
      Radioactive decay.
         β decay (experiment).
            Phenomena accompayning β decay.

   Atomic nucleus.
      Radioactive decay.
         β decay (experiment).
            β decay and electron capture rates (A>90).

   Atomic nucleus.
      Basic nuclear properties. Properties of particular nuclei.
         Properties of particular nuclei (theory).
            Z=47÷53.

   Atomic nucleus.
      Nuclear structure.
         Shell model.
            Shell model calculations (A>90).

   Atomic nucleus.
      Nuclear structure.
         Microscopic methods in nuclear structure theory (Hartree-Fock method, random phase approximation, etc.).
            Hartree--Fock calculations for nuclei.

   Atomic nucleus.
      Radioactive decay.
         β decay (theory).
            Calculations of nuclear β decay matrix elements. β decay and electron capture rates.

   Atomic nucleus.
      Basic nuclear properties. Properties of particular nuclei.
         Basic nuclear properties (experiment).
            Binding energies and masses of nuclei. Nuclear stability.