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颗粒气体的类气液相变

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厚美瑛[1] 刘锐[1] B.Meerson[2]

[1]中国科学院物理研究所北京凝聚态物理国家实验室,北京100080 [2]Racah Institute of Physics, Hebrew University of Jerusalem, Jerusalem, Israel

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国际标准刊号:ISSN -1
国内统一刊号:CN 11-1783

摘  要:

颗粒体系是远离平衡态的复杂耗散体系,在外力驱动下,能表现出类似于固体、液体或气体的特性.在稀疏的颗粒气体中,由于耗散,体系中常常会形成颗粒在局部的凝聚.这种凝聚行为具有自发对称性破缺的特征,使得颗粒气体中自动形成高密度区域和低密度区域共存的非均匀状态,类似于气体中液滴的形成.本文利用零重力条件下的三维颗粒气体理论模型进行计算和分析,揭示了颗粒气体这一相变行为的不稳定性根源及类气液相变本质,给出了颗粒气体中这种相分离发生的临界条件,并通过分子动力学模拟进行检验,结果从定性上和定量上都能够很好地吻合,为进一步的空间实验提供了理论依据和相关实验参数.[著者文摘]

Gas-·liquid Like Phase Transition in Granular Gases U nder Zero G ravity HOU M eiying LIU Rui tBeijing National Laboratory for Condensed Matter Physics}Institute of Physics.Chinese Academy of SciencesJ Beijing 100080) B.M eerson (Racah Institute of PhysicsJ Hebrew University of Jerusalem,JerusalemJ Israe1) Abstract Granular system s are intrinsically far from equilibrium for their m any-·body and dissi-.pative nature.
Chinese Journal of Space Science

分 类 号:

V524

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Gas-liquid Like Phase Transition in Granular Gases Under Zero Gravity

HOU Meiying LIU RuiB. Meerson( Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100080; Racah Institute of Physics, Hebrew University of Jerusalem, Jerusalem, Israel)

Abstract:

Granular systems are intrinsically far from equilibrium for their many-body and dissipative nature. Driven by external forces, they can behave like that of solids, liquids, or gases. In dilute granular gases, clusters usually form due to dissipation, which leads to inhomogeneous density distributions. Such a local condensation shows spontaneous symmetry-breaking instability and neg- ative compressibility instability, just as droplets form in vapor. In this paper, a three-dimensional model for granular gases under zero gravity is investigated, and calculations predict such a gas-liquid like phase transition. Molecular dynamics simulations show good agreements with the theoretical results. The numerical results shall provide detailed experimental parameters for the further related space experiments.[著者文摘]

Key words:

Granular gas, Dissipation, Phase separation, Molecular dynamics simulation

收稿日期: 2007-08-22
修订日期: 2007-11-01

基金资助:

国家自然科学基金项目(A0402-10474124)和中国科学院知识创新工程项目(KACX2-SW-02-06)共同资助

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