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Widom line and dynamical crossovers as routes to understand supercritical water

机译:Widom线和动态交叉作为了解超临界水的途径

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Supercritical water is fundamental in many fields of applications and a precise characterization of the supercritical state is of uttermost importance for this liquid. In a fluid, when moving from the critical point into the single-phase region, the thermodynamic response functions show maxima reminiscent of the critical divergence. Here we study the thermodynamic properties of water in the supercritical region by analysing both available experimental data and our computer simulation results. We find that the lines connecting the maxima of the response functions converge on approaching the critical point in a single line, the Widom line. We further show that the Widom line coincides with a crossover from a liquid-like to a gas-like behaviour clearly visible in the transport properties. These thermodynamic and dynamic features show that the supercritical state in water is far more complex than what was so far believed, indicating a new perspective in the characterization of the thermodynamics of this state.
机译:超临界水在许多应用领域中都是至关重要的,因此,超临界状态的精确表征对于这种液体至关重要。在流体中,当从临界点移动到单相区域时,热力学响应函数显示出极大的让人想起临界散度的现象。在这里,我们通过分析可用的实验数据和计算机模拟结果来研究超临界区域中水的热力学性质。我们发现,连接响应函数最大值的线在接近单线Widom线的临界点时收敛。我们进一步表明,Widom线与在运输性质中清晰可见的从液体状到气体状的交叉相吻合。这些热力学和动力学特征表明,水中的超临界状态比迄今所认为的要复杂得多,这表明该状态的热力学表征有了新的视角。

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