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Towards understanding magnetic dipole excitations in deformed nuclei: Phenomenology

Rompf D., Beuschel T., Draayer J. P., Scheid W., Hirsch J. G.

Phys. Rev. C: Nucl. Phys., vol: 57, num: 4, 1703-1718, published: , US


   Atomic nucleus.
      Nuclear structure.
         Mathematical problems of nuclear structure theory.
            Application of group theory methods to nuclear structure theory.

   Atomic nucleus.
      Nuclear structure.
         Structure of deformed nuclei.
            Low-frequency vibrations of deformed nuclei, scissors mode, etc.

   Atomic nucleus.
      Nuclear structure.
         Microscopic methods in nuclear structure theory (Hartree-Fock method, random phase approximation, etc.).
            Interacting boson model, boson-fermion models and similar methods.

   Atomic nucleus.
      Nuclear structure.
         Structure of deformed nuclei.
            Coupling of rotation with other degrees of freedom.

   Atomic nucleus.
      Radioactive decay.
         Electromagnetic transitions in nuclei (theory).
            General problems.

   Atomic nucleus.
      Basic nuclear properties. Properties of particular nuclei.
         Basic nuclear properties (theory).
            General problems of nuclear spectra theory(low-lying levels).

   Atomic nucleus.
      Basic nuclear properties. Properties of particular nuclei.
         Properties of particular nuclei (theory).
            Z=60÷63.

   Atomic nucleus.
      Basic nuclear properties. Properties of particular nuclei.
         Properties of particular nuclei (theory).
            Z=64÷70.

   Atomic nucleus.
      Nuclear structure.
         Structure of deformed nuclei.
            Theory of triaxial nuclei.

   Atomic nucleus.
      Nuclear structure.
         Structure of deformed nuclei.
            Calculations of properties of deformed nuclei (40<A≤ 200).

   Atomic nucleus.
      Nuclear structure.
         Structure of deformed nuclei.
            Other topics.