首页> 外文期刊>The European physical journal, B. Condensed matter physics >Melting properties of two-dimensional multi-species colloidal systems in a parabolic trap
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Melting properties of two-dimensional multi-species colloidal systems in a parabolic trap

机译:抛物阱中二维多物种胶体系统的熔融特性

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The angular and radial melting properties of two-dimensional classical systems consisting of different types of particles confined in a parabolic trap are studied through modified Monte Carlo simulations. A universal behavior of the angular melting process is found, which occurs in multiple steps due to shell depended melting temperatures. The melting sequence of the different shells is determined by two major factors: (1) the confinement strength which each shell is subjected to, and (2) the specific structure of each shell. Further, a continuous radial disordering of the particle types forming a single circular shell is found and analyzed. This phenomenon has never been observed before in two-dimensional mono-dispersive systems. This continuous radial disordering results from the high energy barrier between different particle types in multi-species systems.
机译:通过改进的蒙特卡洛模拟研究了二维经典系统的角和径向熔化特性,该经典经典系统由限制在抛物线形陷阱中的不同类型的粒子组成。发现了角熔化过程的普遍行为,由于壳层依赖的熔化温度,它在多个步骤中发生。不同壳的熔化顺序取决于两个主要因素:(1)每个壳承受的约束强度;(2)每个壳的特定结构。此外,发现并分析了形成单个圆形壳的颗粒类型的连续径向无序。在二维单分散系统中从未发现过这种现象。这种连续的径向混乱是由于多物种系统中不同粒子类型之间的高能垒所致。

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