Structure of two-and three-alpha systems in cold neutron matter

We present stability and structure of two-and three-alpha systems embedded in dilute cold neutron matter. By solving a few-alpha Schrödinger equation with quasiparticle properties, i.e.,effective mass and induced two-and three-alpha interactions, which are evaluated in terms of Fermi polarons,itis s...

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Veröffentlicht in:EPJ Web of conferences 2022-01, Vol.260, p.11045
Hauptverfasser: Moriya, Hajime, Tajima, Hiroyuki, Horiuchi, Wataru, Iida, Kei, Nakano, Eiji
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Sprache:eng
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Zusammenfassung:We present stability and structure of two-and three-alpha systems embedded in dilute cold neutron matter. By solving a few-alpha Schrödinger equation with quasiparticle properties, i.e.,effective mass and induced two-and three-alpha interactions, which are evaluated in terms of Fermi polarons,itis shown that 8 Be and the Hoyle state become bound at densities of about10 −4 and 10 −3 of the saturation density, respectively. It is also seen that, under cold neutron matter environment, both systems become smaller than the corresponding systems in vacuum. Our results would affect astrophysical models for stellar collapse and neutron star mergers, as well as relevant reaction rates for nucleosynthesis.
ISSN:2100-014X
2101-6275
2100-014X
DOI:10.1051/epjconf/202226011045