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Microscopic Description of Few-Body Systems in the Fermionic Molecular Dynamics Approach

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Abstract

Fermionic Molecular Dynamics (FMD) is a microscopic approach for the description of light nuclei in the p- and sd-shell. Many-body basis states are Slater determinants of Gaussian wave-packets localized in phase space. Brink-type cluster states and harmonic oscillator shell model states are contained as special limiting cases in FMD. The FMD approach is used to study the spectrum of 12C with special emphasis on states with pronounced α-clustering including the Hoyle state. The FMD approach is also used to study 17Ne which is a candidate for a two-proton halo nucleus.

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Correspondence to T. Neff.

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This article is based on the presentation by T. Neff at the Fifth Workshop on Critical Stability, Erice, Sicily.

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Neff, T., Feldmeier, H. Microscopic Description of Few-Body Systems in the Fermionic Molecular Dynamics Approach. Few-Body Syst 45, 145–147 (2009). https://doi.org/10.1007/s00601-009-0030-y

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  • DOI: https://doi.org/10.1007/s00601-009-0030-y

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