Published February 1995
| Version v1
Journal article
Relativistic and thermodynamically consistent treatment for the finite volume effect of nucleons in nuclear matter
Creators
- 1. Beijing Univ., BJ (China). Dept. of Technical Physics
- 2. China Center of Advanced Science and Technology (CCAST), Beijing, BJ (China)
Description
A previous thermodynamically consistent procedure for considering the finite volume effect of nucleons in nuclear matter is developed to be relativistic. Parameters are determined by fitting all five empirical data for normal nuclear matter. The resulting nuclear equations of state may be used in researches for neutron stars and for phase transitions between nuclear matter and quarkgluon plasma. (orig.)
Additional details
Publishing Information
- Journal Title
- Zeitschrift fuer Physik. A, Hadrons and Nuclei
- Journal Volume
- 351
- Journal Issue
- 1
- Journal Page Range
- p. 89-97.
- ISSN
- 0939-7922
- CODEN
- ZPAHEX
INIS
- Country of Publication
- Germany
- Country of Input or Organization
- Germany
- INIS RN
- 26043184
- Subject category
- S73: NUCLEAR PHYSICS AND RADIATION PHYSICS;
- Descriptors DEI
- COLOR MODEL; COMPRESSIBILITY; COUPLING; ENERGY-MOMENTUM TENSOR; ENTROPY; EQUATIONS OF MOTION; EQUATIONS OF STATE; GLUON MODEL; HYDRODYNAMICS; LORENTZ INVARIANCE; MESON-NUCLEON INTERACTIONS; NEUTRON STARS; NUCLEAR MATTER; NUCLEAR TEMPERATURE; NUCLEONS; PARTICLE RADII; PARTICLE STRUCTURE; PHASE TRANSFORMATIONS; QUARK MATTER; RELATIVISTIC PLASMA; RELATIVISTIC RANGE; SCALAR FIELDS; TEMPERATURE ZERO K; VECTOR FIELDS; VOLUME
- Descriptors DEC
- BARYONS; COMPOSITE MODELS; DIFFERENTIAL EQUATIONS; ELEMENTARY PARTICLES; ENERGY RANGE; EQUATIONS; FERMIONS; FLUID MECHANICS; HADRON-HADRON INTERACTIONS; HADRONS; INTERACTIONS; INVARIANCE PRINCIPLES; MATHEMATICAL MODELS; MATTER; MECHANICAL PROPERTIES; MECHANICS; MESON-BARYON INTERACTIONS; PARTIAL DIFFERENTIAL EQUATIONS; PARTICLE INTERACTIONS; PARTICLE MODELS; PARTICLE PROPERTIES; PHYSICAL PROPERTIES; PLASMA; QUARK MODEL; STARS; TENSORS; THERMODYNAMIC PROPERTIES