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Sequential phase transitions and transient structured fluctuations in two-dimensional systems with a high-density Kagome lattice phase

机译:具有高密度Kagome格子相的二维系统中的顺序相变和瞬态结构波动

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We report studies of (i) the isothermal density dependent sequences of phases in two-dimensional systems of particles with repulsive pair potentials devised by Truskett [J. Chem. Phys. 145, 054901 (2016)] and Torquato [Phys. Rev. E 88, 042309 (2013)] to support a high-density Kagome lattice phase and (ii) transient structured fluctuations close to a transition to a Kagome lattice. The commonalities in the sequences of phases in these systems and other 2D systems suggest the existence of a universal mechanism driving all to favor similar packing arrangements as the density is increased, but the simulations also show that the only such general rule proposed, namely, the Suto theorem, is not a necessary condition for the support of multiple distinct lattice structures by a particular pair potential. The transient fluctuations in the liquid close to the liquid-to-Kagome phase transition have Kagome symmetry, whereas deeper in the liquid phase, the fluctuations have hexagonal symmetry. When the transition is string-to-Kagome phase, the transient structured fluctuations in the string phase have both six-fold and other than six-fold symmetries. The path of the string-to-Kagome transition in the Truskett system involves intermediate honeycomb configurations that subsequently buckle to form a Kagome lattice. The path of the string-to-Kagome transition in the Torquato system suggests that the Kagome phase is formed by coiled strings merging together; increasing density generates a Kagome phase with imperfections such as 8-particle rings. Published under license by AIP Publishing.
机译:我们报告(i)具有Truskett设计的排斥对电位的颗粒二维系统中的等温密度依赖性序列的研究[J.化学。物理。 145,054901(2016)]和Torquato [物理。 Rev.E 88,042309(2013)]支持高密度Kagome格子相和(ii)瞬态结构波动,接近到kagome格子的过渡。这些系统和其他2D系统中相位序列中的共同性表明,随着密度增加,普遍机构的存在,普遍机构驱动所有以获得类似的包装布置,但模拟也表明唯一这样的一般规则,即Suto定理不是通过特定对势支持多个不同的晶格结构的必要条件。接近液体对kagome相转变的液体中的瞬态波动具有Kagome对称性,而在液相中更深,波动具有六边形对称性。当过渡是字符串到kagome阶段时,弦阶段中的瞬态结构化波动均具有六倍和其他六倍的对称性。 Truskett系统中的字符串到kagome过渡的路径涉及中间蜂窝配置,随后扣为形成kagome格子。 Torquato系统中的字符串到kagome过渡的路径表明,Kagome阶段通过卷绕串合并在一起;增加的密度产生kagome阶段,其中缺陷如8粒环。通过AIP发布在许可证下发布。

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