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Diffusionless first-order phase transitions in systems with frozen configurational degrees of freedom

机译:具有冻结构型自由度的系统中的无扩散一阶相变

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摘要

We consider systems that can be described in terms of two kinds of degree of freedom. The corresponding ordering modes may, under certain conditions, be coupled to each other. We may thus assume that the primary ordering mode gives rise to a diffusionless first-order phase transition. The change of its thermodynamic properties as a function of the secondary-ordering-mode state is then analyzed. Two specific examples are discussed. First, we study a three-state Potts model in a binary system. Using mean-field techniques, we obtain the phase diagram and different properties of the system as a function of the distribution of atoms on the different lattice sites. In the second case, the properties of a displacive structural phase transition of martensitic type in a binary alloy are studied as a function of atomic order. Because of the directional character of the martensitic-transition mechanism, we find only a very weak dependence of the entropy on atomic order. Experimental results are found to be in quite good agreement with theoretical predictions.
机译:我们考虑可以用两种自由度来描述的系统。在某些条件下,相应的排序模式可以彼此耦合。因此,我们可以假设初级排序模式引起了无扩散的一阶相变。然后分析其热力学性质随二次订购态的变化。讨论了两个具体示例。首先,我们研究二进制系统中的三态Potts模型。使用均值场技术,我们获得了系统的相图和不同属性,作为不同晶格位置上原子分布的函数。在第二种情况下,研究了二元合金中马氏体型位移结构相变的性质与原子序的关系。由于马氏体转变机理的方向性,我们发现熵对原子序的依赖性很小。实验结果与理论预测非常吻合。

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