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Possible Scenarios of a Phase Transition from Isotropic Liquid to a Hexatic Phase in the Theory of Melting in Two-Dimensional Systems

机译:从各向同性液体到二维系统熔化理论中的相位转变到肝化相的可能场景

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摘要

A two-stage process consisting of two continuous Berezinskii-Kosterlitz-Thouless-type transitions with an intermediate anisotropic liquid, a hexatic phase, is a well-known scenario of melting in two-dimensional systems. A direct first-order transition, similar to melting in three-dimensional systems, is another scenario variant. We prove the possibility in principle of the existence of a third scenario according to which melting occurs via two transitions, but in contrast to predictions of the Berezinskii-Kosterlitz-Thouless theory, the transition from an isotropic liquid to a hexatic phase is a first-order transition. Such a scenario was recently observed in a computer simulation of two-dimensional systems and then in a real experiment. Our proof is based on an analysis of branching solutions of an exact closed nonlinear integral equation for a two-particle conditional distribution function.
机译:由两个连续Berezinskii-Kosterlitz-Thous型转变组成的两阶段过程,其具有中间各向异性液体,一种谐波阶段,是二维系统中熔化的公知情景。 一种直接的一阶转换,类似于三维系统中的熔化,是另一种场景变体。 我们原则上证明了第三种情况的原则上,根据其两次过渡发生熔化,但与Berzinskii-Kosterlitz-Thousls理论的预测相反,从各向同性液体到伴者相位的转变是第一个 - 订单过渡。 最近在二维系统的计算机模拟中观察到这种情况,然后在真实实验中观察到。 我们的证据基于对双粒子条件分布函数的精确闭合非线性整体方程的分支解的分析。

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