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Phase transition of compartmentalized surface models

机译:分隔表面模型的相变

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Two types of surface models have been investigated by Monte Carlo simulations on triangulated spheres with compartmentalized domains. Both models are found to undergo a first-order collapsing transition and a first-order surface fluctuation transition. The first model is a fluid surface one. The vertices can freely diffuse only inside the compartments, and they are prohibited from the free diffusion over the surface due to the domain boundaries. The second is a skeleton model. The surface shape of the skeleton model is maintained only by the domain boundaries, which are linear chains with rigid junctions. Therefore, we can conclude that the first-order transitions occur independent of whether the shape of surface is mechanically maintained by the skeleton (=the domain boundary) or by the surface itself.
机译:通过蒙特卡洛模拟对具有分隔区域的三角球进行了两种类型的表面模型研究。发现这两个模型都经历了一次塌陷过渡和一次表面起伏过渡。第一个模型是流体表面模型。顶点只能在隔室内自由扩散,并且由于域边界而被禁止在表面上自由扩散。第二个是骨架模型。骨架模型的表面形状仅通过域边界来维持,该域边界是具有刚性连接的线性链。因此,我们可以得出结论,一阶跃迁的发生与表面的形状是由骨架(=域边界)还是由表面本身机械地保持无关。

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