Hard-Core Radius of Nucleons within the Induced Surface Tension Approach

Author:

Bugaev Kyrill,Ivanytskyi Aleksei,Sagun Violetta,Grinyuk Boris,Savchenko Denis,Zinovjev Gennady,Nikonov Edward,Bravina Larissa,Zabrodin Evgeny,Blaschke David,Taranenko Arkadiy,Turko LudwikORCID

Abstract

We review the recent approach to model the hadronic and nuclear matter equations of state using the induced surface tension concept, which allows one to go far beyond the usual Van der Waals approximation. Since the obtained equations of state, classical and quantum, are among the most successful ones in describing the properties of low density phases of strongly interacting matter, they set strong restrictions on the possible value of the hard-core radius of nucleons, which is widely used in phenomenological equations of state. We summarize the latest results obtained within this novel approach and perform a new detailed analysis of the hard-core radius of nucleons, which follows from hadronic and nuclear matter properties. Such an analysis allows us to find the most trustworthy range of its values: the hard-core radius of nucleons is 0.3–0.36 fm. A comparison with the phenomenology of neutron stars implies that the hard-core radius of nucleons has to be temperature and density dependent. Such a finding is supported when the eigenvolume of composite particles like hadrons originates from their fermionic substructure due to the Pauli blocking effect.

Funder

National Research Nuclear University MEPhI

Norges Forskningsråd

Narodowe Centrum Nauki

Ministry of Education and Science of the Russian Federation

National Academy of Sciences of Ukraine

Publisher

MDPI AG

Subject

General Physics and Astronomy

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