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      Coupled-cluster computations of atomic nuclei

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          Abstract

          In the past decade, coupled-cluster theory has seen a renaissance in nuclear physics, with computations of neutron-rich and medium-mass nuclei. The method is efficient for nuclei with product-state references, and it describes many aspects of weakly bound and unbound nuclei. This report reviews the technical and conceptual developments of this method in nuclear physics, and the results of coupled-cluster calculations for nucleonic matter, and for exotic isotopes of helium, oxygen, calcium, and some of their neighbors.

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          On the Correlation Problem in Atomic and Molecular Systems. Calculation of Wavefunction Components in Ursell‐Type Expansion Using Quantum‐Field Theoretical Methods

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            Coupled-cluster theory in quantum chemistry

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              The equation of motion coupled‐cluster method. A systematic biorthogonal approach to molecular excitation energies, transition probabilities, and excited state properties

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                Author and article information

                Journal
                30 December 2013
                Article
                10.1088/0034-4885/77/9/096302
                1312.7872
                91a9622f-53f1-4e0a-a939-cc21d105384b

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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                Rep. Prog. Phys. 77, 096302 (2014)
                nucl-th nucl-ex

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