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Combining the in-medium similarity renormalization group with the density matrix renormalization group: Shell structure and information entropy

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arxiv 2207.01438 v2 pith:TYBPWLXR submitted 2022-07-04 nucl-th cond-mat.str-elquant-ph

classification nucl-thcond-mat.str-elquant-ph
keywords grouprenormalizationcalculationscombiningdensityentanglementin-mediuminitio
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We propose a novel many-body framework combining the density matrix renormalization group (DMRG) with the valence-space (VS) formulation of the in-medium similarity renormalization group. This hybrid scheme admits for favorable computational scaling in large-space calculations compared to direct diagonalization. The capacity of the VS-DMRG approach is highlighted in ab initio calculations of neutron-rich nickel isotopes based on chiral two- and three-nucleon interactions, and allows us to perform converged ab initio computations of ground and excited state energies. We also study orbital entanglement in the VS-DMRG, and investigate nuclear correlation effects in oxygen, neon, and magnesium isotopes. The explored entanglement measures reveal nuclear shell closures as well as pairing correlations.

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  1. Improved structure of calcium isotopes from ab initio calculations

    nucl-th 2024-11 conditional novelty 6.0 of 10

    IMSRG(3)-N7 calculations for calcium-44, -48, and -52 show that three-body flow corrections substantially lower the 48Ca 2+ energy, improving the description of the N=28 shell closure, while leaving the 52Ca charge-ra...

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