Equation of state of nuclear matter in the relativistic Dirac-Brueckner approach

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Equations Of State, Nuclear Particles, Relativistic Effects, Green'S Functions, Nuclear Interactions, Nucleons, Pade Approximation

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Within the framework of the relativistic Dirac-Brueckner approach, the equation of state of nuclear matter is studied on the basis of a one-boson-exchange interaction. The saturation properties of the ground state and its compressional energy are calculated. The model is extended to nonzero temperature by use of finite-temperature Green's functions for the dressed nucleons. Isotherms in a momentum-medium density diagram are obtained which show the existence of a liquid-vapor phase equilibrium below a critical temperature of approximately 12 MeV.

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