核物质的液-气相变
摘要
presented a survey summarizing the empirical evidence for and interpretations of a first-order liquid-gas phase transition in nuclear matter. Earlier developments and the present state of knowledge about the extraction of the critical point for such a transition, primarily from the systematics of multifragmention data, are outlined. By analogy with a Van der Waals equation of state, the empirically deduced critical temperature and pressure permit to draw a schematic picture of the underlying nuclear potential. More detailed approaches to the liquid-gas transition using self-consistent nuclear Hartree-Fock and variational calculations are described. Critical exponents are reported. Then chiral effective field theory, as the low-energy realization of QCD, is discussed in the context of nuclear thermodynamics. Its implications for the liquid-gas transition in symmetric nuclear matter as well as in neutron-rich matter are reviewed.
引用
@article{arxiv.2602.09916,
title = {Liquid-gas phase transition of nuclear matter},
author = {Norbert Kaiser and Wolfram Weise},
journal= {arXiv preprint arXiv:2602.09916},
year = {2026}
}
备注
16 pages, 12 figures