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Mehdi Ghazanfari Mojarrad

Mehdi Ghazanfari Mojarrad

Associate Professor

College: faculty of Physics

Department: Nuclear Physics

Degree: Ph.D

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Mehdi Ghazanfari Mojarrad

Associate Professor Mehdi Ghazanfari Mojarrad

College: faculty of Physics - Department: Nuclear Physics Degree: Ph.D |



Mehdi Ghazanfar Mojarrad                                                                    
Department of Physics                                                                         
University of kashan
P.O.B.
87317-53153

Tel: +98-31-55912399
Email: ghazanfari@kashanu.ac.ir
          ghazanfari1982@gmail.com


 

نمایش بیشتر

Thomas–Fermi approximation for the equation of state of nuclear matter: A semi-classical approach from the Landau Fermi-Liquid theory

AuthorsM. Ghazanfari Mojarrad and S. K. Mousavi Khoroshtomi
JournalINT. J. MOD. PHYS. E
Paper TypeFull Paper
Published At2017
Journal GradeISI
Journal TypeElectronic
Journal CountrySingapore
Journal IndexISI

Abstract

The equation of state (EOS) of nuclear matter is investigated in a semi-classical mean-field (MF) approach. Starting from the phase-space NN-interaction of Myers and Swiatecki [Nucl. Phys. A 601 (1996) 141], the EOS of nuclear matter by the Thomas– Fermi approximation is derived. A self-consistent semi-classical approach is presented by employing the Landau Fermi-Liquid theory (LFT). In our statistical approach, the phase-space occupation number can be expressed in terms of an extended effective mass which is affected by both temperature and nucleonic density. Accordingly, an explicit expression of the nucleonic chemical potential inside the nucleonic occupation number can be obtained. Special attention is also devoted to the density dependence of the nuclear symmetry free energy at different temperatures. The results of this model are compared with other theoretical predictions.