Two-Step Melting in Two Dimensions: First-Order Liquid-Hexatic Transition
Двухступенчатое плавление в двух измерениях: первообразный переход жидкость—гексатик
2011-10-07
SCID: 54.1/a2p5f4ru
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first-order transitionhard-disk modelhexatic-solid transitionliquid-hexatic transitiontwo-step melting
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Abstract (AI)
Melting in two spatial dimensions, as realized in thin films or at interfaces, represents one of the most fascinating phase transitions in nature, but it remains poorly understood. Even for the fundamental hard-disk model, the melting mechanism has not been agreed upon after 50 years of studies. A recent Monte Carlo algorithm allows us to thermalize systems large enough to access the thermodynamic regime. We show that melting in hard disks proceeds in two steps with a liquid phase, a hexatic phase, and a solid. The hexatic-solid transition is continuous while, surprisingly, the liquid-hexatic transition is of first order. This melting scenario solves one of the fundamental statistical-physics models, which is at the root of a large body of theoretical, computational, and experimental research.
Key Findings
1
A recent Monte Carlo algorithm enabled thermalization of sufficiently large systems to reach the thermodynamic regime and reveal these transitions.
2
Hard-disk melting in two dimensions proceeds via two distinct steps: liquid → hexatic → solid.
3
The hexatic-to-solid transition is continuous.
4
The liquid-to-hexatic transition is first-order (discontinuous).
5
This resolved the long-standing uncertainty about the melting mechanism in the fundamental hard-disk model.
Research Object
Two-dimensional hard-disk system (melting of hard disks in two spatial dimensions)
Research Subject
Phase transitions and melting mechanism: identification of two-step melting with a first-order liquid–hexatic transition and a continuous hexatic–solid transition
Publication Details
Publication Date
2011-10-07
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