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Titlebook: Compound-Nuclear Reactions; Proceedings of the 6 Jutta Escher,Yoram Alhassid,Walid Younes Conference proceedings 2021 This is a U.S. govern

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https://doi.org/10.1007/978-981-99-6077-4oss sections when many resonant levels are involved. This approach assumes that the density of levels is sufficient that only average properties, such as optical potentials and level densities, are sufficient to model the reaction. However, for intermediate masses or near the drip lines, these assum
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Elliptic Complex Geometry and Oka Theoryus evaporation. They dominate the reaction spectra in a large range of energy, especially for fast incident projectiles. The quantum models developed so far describe the process as multiple collisions of an incident leading particle with the target nucleus. The low-energy excited states of the targe
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Embeddings, Immersions and Submersionsaps (kernels) for the p-., p-.O, and p-.Ne cluster systems using realistic nucleon–nucleon interactions. This is achieved in the framework of a new ab initio approach that combines the symmetry-adapted no-core shell model (SA-NCSM) with the resonating group method (RGM). In this model, a physically
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Stein Manifolds and Holomorphic Mappings related to the ground state of these nuclei, with emphasis on the charge density. Such an analysis requires a fully non-local implementation of the DOM including its imaginary component. Illustrations are provided on how ingredients thus generated provide critical components for the description of
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Embeddings, Immersions and Submersions, obtained from the nucleon self-energy in infinite matter, while the real spin–orbit term is extracted from a nuclear energy density functional constructed from the density matrix expansion using the same chiral potential. The density-dependent optical potential is then folded with the nuclear densi
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Groups With Commutator Relations,nt input to the Hauser–Feshbach theory of compound nucleus reactions. We discuss empirical models of level densities and summarize the main experimental methods used to determine them. The microscopic calculation of level densities in the presence of correlations is a challenging many-body problem.
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