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首页> 外文期刊>Physica, A. Statistical mechanics and its applications >Phase transitions in small systems: Microcanonical vs. canonical ensembles
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Phase transitions in small systems: Microcanonical vs. canonical ensembles

机译:小型系统中的相变:微规范和。典范合奏

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We compare phase transition(-like) phenomena in small model systems for both microcanonical and canonical ensembles. The model systems correspond to a few classical (non-quantum) point particles confined in a one-dimensional box and interacting via Lennard-Jones-type pair potentials. By means of these simple examples it can be shown already that the microcanonical thermodynamic functions of a small system may exhibit rich oscillatory behavior and, in particular, singularities (non-analyticities) separating different microscopic phases. These microscopic phases may be identified as different microphysical dissociation states of the small system. The microscopic oscillations of microcanonical thermodynamic quantities (e.g., temperature, heat capacity, or pressure) should in principle be observable in suitably designed evaporation/dissociation experiments (which must realize the physical preconditions of the microcanonical ensemble). By contrast, singular phase transitions cannot occur, if a small system is embedded into an infinite heat bath (thermostat), corresponding to the canonical ensemble. For the simple model systems under consideration, it is nevertheless possible to identify a smooth canonical phase transition by studying the distribution of complex zeros of the canonical partition function. (c) 2006 Elsevier B.V. All rights reserved.
机译:我们比较小模型系统中微规范和规范合奏的相变(类)现象。该模型系统对应于一些经典(非量子)点粒子,这些粒子被限制在一维盒子中并通过Lennard-Jones型对势相互作用。通过这些简单的例子,已经可以表明,一个小型系统的微规范热力学函数可能表现出丰富的振荡行为,特别是分离不同微观相的奇异性(非解析性)。这些微观阶段可以被识别为小型系统的不同微观物理解离状态。原则上,在适当设计的蒸发/离解实验(必须实现微规范集合的物理前提)中,应观察到微规范热力学量(例如,温度,热容量或压力)的微观振荡。相反,如果将一个小系统嵌入到对应于规范集合的无限热浴(恒温器)中,则不会发生奇异相变。对于所考虑的简单模型系统,仍然可以通过研究规范划分函数的复零的分布来确定平滑规范相变。 (c)2006 Elsevier B.V.保留所有权利。

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