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Non-congruence of liquid-gas phase transition of asymmetric nuclear matter

机译:不对称核事务的液态气相转变的非常规

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We first explore the liquid-gas mixed phase in a bulk calculation, where two phases coexist without the geometrical structures. In the case of symmetric nuclear matter, the system behaves congruently, and the Maxwell construction becomes relevant. For asymmetric nuclear matter, on the other hand, the phase equilibrium is no more attained by the Maxwell construction since the liquid and gas phases are non-congruent; the particle fractions become completely different with each other. One of the origins of such non-congruence is attributed to the large symmetry energy. Subsequently we explore the charge-neutral nuclear matter with electrons by fully applying the Gibbs conditions to figure out the geometrical (pasta) structures in the liquid-gas mixed phase. We emphasize the effects of the surface tension and the Coulomb interaction on the pasta structures. We also discuss the thermal effects on the pasta structures.
机译:我们首先在散装计算中探讨液体气体混合相位,其中两个相位在没有几何结构的情况下共存。在对称核问题的情况下,系统的行为行为,麦克斯韦建设变得相关。另一方面,对于不对称的核物质,麦克斯韦建筑不再获得相平衡,因为液体和气体相是非全等的;颗粒馏分彼此完全不同。这种非同时的起源之一归因于大量对称能量。随后,我们通过充分地施加GIBBS条件来探讨电子气体混合相中的几何(面食)结构来探讨带有电子的电荷中性核物质。我们强调了表面张力和库仑相互作用对面食结构的影响。我们还讨论了对面食结构的热效应。

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