Mendoza-Coto Alejandro, Nicolao Lucas, Díaz-Méndez Rogelio
Departamento de Física, Universidade Federal de Santa Catarina, 88040-900, Florianópolis, Brazil.
Department of Theoretical Physics, KTH Royal Institute of Technology, SE-106 91, Stockholm, Sweden.
Sci Rep. 2019 Feb 14;9(1):2020. doi: 10.1038/s41598-018-38465-8.
The competition between a short range attractive interaction and a nonlocal repulsive interaction promote the appearance of modulated phases. In this work we present the microscopic mechanisms leading to the emergence of inverse transitions in such systems by considering a thorough mean-field analysis of a variety of minimal models with different competing interactions. We identify the specific connections between the characteristic energy of the homogeneous and modulated phases and the observed reentrant behaviors in the phase diagram. In particular, we find that reentrance is appreciable when the characteristic energy cost of the homogeneous and modulated phases are comparable to each other, and for systems in which the local order parameter is limited. In the asymptotic limit of high energy cost of the homogeneous phase we observe that the degree of reentrance decreases exponentially with the ratio of the characteristic energy cost of homogeneous and modulated phases. These mean-field results are confronted with Langevin simulations of an effective coarse grained model, confirming the expected extension of the reentrance in the phase diagram. These results shed new light on many systems undergoing inverse melting transitions by qualitatively improving the understanding of the interplay of entropy and energy around the inverse melting points.
短程吸引相互作用和非局域排斥相互作用之间的竞争促进了调制相的出现。在这项工作中,我们通过对具有不同竞争相互作用的各种最小模型进行全面的平均场分析,展示了导致此类系统中逆转变出现的微观机制。我们确定了均匀相和调制相的特征能量与相图中观察到的再入行为之间的具体联系。特别是,我们发现当均匀相和调制相的特征能量成本彼此可比时,以及对于局部序参量受限的系统,再入现象很明显。在均匀相高能量成本的渐近极限中,我们观察到再入程度随着均匀相和调制相特征能量成本的比值呈指数下降。这些平均场结果与一个有效粗粒化模型的朗之万模拟结果进行了对比,证实了相图中再入现象的预期扩展。这些结果通过定性地加深对逆熔点周围熵与能量相互作用的理解,为许多经历逆熔化转变的系统提供了新的见解。