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首页> 外文期刊>Journal of Experimental and Theoretical Physics >Phase transitions and dynamic entropy in small two-dimensional systems: Experiment and numerical simulation
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Phase transitions and dynamic entropy in small two-dimensional systems: Experiment and numerical simulation

机译:小型二维系统中的相变和动态熵:实验和数值模拟

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摘要

The results of experimental and numerical analysis are presented for phase transitions in strongly nonequilibrium small systems of strongly interacting Brownian particles. The dynamic entropy method is applied to analysis of the state of these systems. Experiments are carried out with kinetic heating of the structures of micron-size particles in a laboratory rf discharge plasma. Three phase states of these small systems are observed: crystalline, liquid, and transient. The mechanism of phase transitions in cluster structures of strongly interacting particles is described.
机译:实验和数值分析的结果针对强相互作用布朗粒子的强非平衡小系统中的相变给出。动态熵方法用于分析这些系统的状态。在实验室射频放电等离子体中对微米级颗粒的结构进行动力学加热进行实验。可以观察到这些小型系统的三相状态:结晶,液态和瞬态。描述了强相互作用粒子的簇结构中的相变机理。

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