2007Progress of Theoretical Physics SupplementRequires access

Kaon-Condensed Hypernuclei

Takumi Muto

Open publisher page 2 citations

Abstract

The structure of a self-bound object with kaon condensates is investigated based on the effective chiral Lagrangian for the kaon-baryon interaction, combined with the nonrelativistic baryon-baryon interaction model. It is shown that a highly dense and compact object is obtained as a density isomer, for |S|/A = O(1) with A and |S| being the numbers of baryons and negative strangeness, respectively.

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What this paper is about

The structure of a self-bound object with kaon condensates is investigated based on the effective chiral Lagrangian for the kaon-baryon interaction, combined with the nonrelativistic baryon-baryon interaction model. It is shown that a highly dense and compact object is obtained as a density isomer, for |S|/A = O(1) with A and |S| being the numbers of baryons and negative strangeness, respectively.

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Available abstract

The structure of a self-bound object with kaon condensates is investigated based on the effective chiral Lagrangian for the kaon-baryon interaction, combined with the nonrelativistic baryon-baryon interaction model. It is shown that a highly dense and compact object is obtained as a density isomer, for |S|/A = O(1) with A and |S| being the numbers of baryons and negative strangeness, respectively.

Key concepts: Strangeness, Physics, Baryon, Particle physics, Lagrangian, Baryon number, Object (grammar), Nuclear physics

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