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Titlebook: Contemporary Nuclear Shell Models; Proceedings of an In Xing-Wang Pan,Da Hsuan Feng,Michel Vallières Conference proceedings 1997 Springer-V

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Relativistic mean field theory and applications in finite nuclei,Relativistic Mean Field (RMF) theory is applied to modern problems of nuclear structure, such as the description of rotating bands in super-deformed nuclei or the investigation of neutron halos in light exotic nuclei.
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Epigenetics: Epilogue or Prologue?l model. We discuss the current status of . data sets, partial-wave analyses, and some of the issues that go into the construction of potential models. Our remarks are illustrated by reference to the Argonne . . potential, one of a number of new potentials that fit elastic nucleon-nucleon data up to
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https://doi.org/10.5822/978-1-61091-534-2methods for deriving such effective interactions, starting from the free NN potential. For a chosen model space, there are formal methods for obtaining a model-space effective hamiltonian . . which can reproduce certain physical properties of the original hamiltonian. These methods are briefly discu
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https://doi.org/10.5822/978-1-61091-534-2s problem has been investigated since the early days of the nuclear shell-model with considerable progress phenomenologically. Microscopic approaches suffer from the problem that the perturbation expansion for the interaction in the model space diverges due to intruder states. This difficulty might
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https://doi.org/10.5822/978-1-61091-534-2s employed. The calculations are performed within the framework of the seniority scheme by making use of the chain-calculation method. This provides practically exact solutions while cutting down the amount of computational work required by a standard seniority-truncated calculation. The behavior of
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https://doi.org/10.5822/978-1-61091-534-2tructure of low-lying states are selected by an auxiliary field Monte Carlo method, which produce many-body basis states for diagonalizing the Hamiltonian consisting of one- and two-body terms. Not only the ground state but also low-lying excited states are obtained with their wave functions. The fe
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