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Phase transition induced by a shock wave in hard-sphere and hard-disk systems

机译:冲击波在硬盘和硬盘系统中引起的相变

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Dynamic phase transition induced by a shock wave in hard-sphere and hard-disk systems is studied on the basis of the system of Euler equations with caloric and thermal equations of state. First, Rankine-Hugoniot conditions are analyzed. The quantitative classification of Hugoniot types in terms of the thermodynamic quantities of the unperturbed state (the state before a shock wave) and the shock strength is made. Especially Hugoniot in typical two possible cases (P-1 and P-2) of the phase transition is analyzed in detail. In the case P-1 the phase transition occurs between a metastable liquid state and a stable solid state, and in the case P-2 the phase transition occurs through coexistence states, when the shock strength changes. Second, the admissibility of the two cases is discussed from a viewpoint of the recent mathematical theory of shock waves, and a rule with the use of the maximum entropy production rate is proposed as the rule for selecting the most probable one among the possible cases, that is, the most suitable constitutive equation that predicts the most probable shock wave. According to the rule, the constitutive equation in the case P-2 is the most promising one in the dynamic phase transition. It is emphasized that hard-sphere and hard-disk systems are suitable reference systems for studying shock wave phenomena including the shock-induced phase transition in more realistic condensed matters. (C) 2008 American Institute of Physics.
机译:在具有热量和热状态方程的欧拉方程组的基础上,研究了冲击波在硬球和硬盘系统中引起的动态相变。首先,对Rankine-Hugoniot条件进行分析。根据无扰动状态(冲击波之前的状态)的热力学量和冲击强度对Hugoniot类型进行定量分类。尤其对Hugoniot在典型的两种可能的相变情况(P-1和P-2)中进行了分析。在P-1的情况下,当冲击强度改变时,在亚稳态液态和稳定的固态之间发生相变,而在P-2的情况下,通过共存状态发生相变。其次,从最近的冲击波数学理论的角度讨论了这两种情况的可容许性,并提出了一种使用最大熵生产率的规则作为在可能情况中选择最可能的一种的规则,也就是说,最合适的本构方程可以预测最可能的冲击波。根据规则,P-2情况下的本构方程是动态相变中最有前途的一个。需要强调的是,硬球和硬盘系统是研究冲击波现象的合适参考系统,包括在更现实的凝聚态中由激波引起的相变。 (C)2008美国物理研究所。

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