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Constant-volume heat capacity in a near-critical fluid from Monte Carlo simulations

机译:基于蒙特卡洛模拟的近临界流体中的恒定体积热容

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We consider a near-critical fluid of hard spheres with short-range interactions (similar tor(-6)) and obtain its constant-volume heat capacity C-V by means of Monte Carlo calculations in the canonical ensemble. The question addressed is whether or not the heat capacities of the finite-size systems studied in simulations can provide a reliable indication of nonclassical criticality. For the model fluid considered here this is found to be the case. The heat capacity along the critical isochore shows a peak near the critical temperature, with a system size dependence that is consistent with the known Ising universality class of the model. The relevance of our results to recent attempts to determine the universality class of ionic fluids through calculations of C-V is briefly discussed. (C) 2004 American Institute of Physics.
机译:我们考虑了具有短程相互作用(类似于tor(-6))的硬球的近临界流体,并通过规范合集中的蒙特卡罗计算获得了其恒定体积的热容C-V。解决的问题是在模拟中研究的有限尺寸系统的热容量是否可以提供非经典临界的可靠指示。对于此处考虑的模型流体,情况就是如此。沿着临界等温线的热容在临界温度附近显示一个峰值,其系统尺寸依赖性与模型的已知Ising通用性类别一致。简要讨论了我们的结果与最近通过C-V计算确定离子流体通用性类别的尝试的相关性。 (C)2004年美国物理研究所。

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