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CHEMICAL AND MECHANICAL INSTABILITY IN HOT ISOSPIN-ASYMMETRIC NUCLEAR MATTER

机译:热等旋不对称核物质的化学和机械不稳定性

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摘要

Using phenomenological equations of state, we study the chemical and mechanical instabilities in hot isospin-asymmetric nuclear matter. Both instabilities are found to depend strongly on the isospin asymmetry of the nuclear matter. For chemically and mechanically stable asymmetric nuclear matter, a lower neutron excess is found in the liquid phase than in the gas phase. Furthermore, the neutron excess in the mixed phase at densities between that of the liquid and the gas phases is limited by a certain maximum value. Also, for the nuclear equations of state considered here the boundary of chemical instability in the pressure-density plane is found to be more extended than that of mechanical instability. However, the locations of these boundaries depend sensitively on both the bulk compressibility of nuclear matter and the density dependence of the symmetry energy. (C) 1997 Elsevier Science B.V. [References: 40]
机译:使用状态的现象学方程,我们研究了热的等旋不对称核物质中的化学和机械不稳定性。发现这两种不稳定性都很大程度上取决于核物质的同位旋不对称性。对于化学和机械稳定的不对称核物质,液相中的中子过量比气相中的低。此外,在混合相中处于液相和气相之间的密度的中子过量被某个最大值限制。同样,对于此处考虑的状态核方程,发现压力密度平面中化学不稳定的边界比机械不稳定的边界更扩展。然而,这些边界的位置敏感地取决于核物质的整体可压缩性和对称能量的密度依赖性。 (C)1997 Elsevier Science B.V. [参考:40]

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