Das Moupriya, Green Jason R
Department of Chemistry, University of Massachusetts Boston, Boston, Massachusetts 02125, USA.
Department of Physics, University of Massachusetts Boston, Boston, Massachusetts 02125, USA.
Phys Rev Lett. 2017 Sep 15;119(11):115502. doi: 10.1103/PhysRevLett.119.115502. Epub 2017 Sep 14.
Bulk properties of equilibrium liquids are a manifestation of intermolecular forces. Here, we show how these forces imprint on dynamical fluctuations in the Lyapunov exponents for simple fluids with and without attractive forces. While the bulk of the spectrum is strongly self-averaging, the first Lyapunov exponent self-averages only weakly and at a rate that depends on the length scale of the intermolecular forces; short-range repulsive forces quantitatively dominate longer-range attractive forces, which act as a weak perturbation that slows the convergence to the thermodynamic limit. Regardless of intermolecular forces, the fluctuations in the Kolmogorov-Sinai entropy rate diverge, as one expects for an extensive quantity, and the spontaneous fluctuations of these dynamical observables obey fluctuation-dissipation-like relationships. Together, these results are a representation of the van der Waals picture of fluids and another lens through which we can view the liquid state.
平衡液体的宏观性质是分子间力的一种表现。在这里,我们展示了这些力如何在具有和不具有吸引力的简单流体的李雅普诺夫指数的动态涨落中留下印记。虽然频谱的大部分具有很强的自平均性,但第一个李雅普诺夫指数的自平均性较弱,且其速率取决于分子间力的长度尺度;短程排斥力在数量上占主导地位,而长程吸引力则作为一种微弱的扰动,减缓了向热力学极限的收敛。无论分子间力如何,柯尔莫哥洛夫 - 西奈熵率的涨落都会发散,这正如人们对广延量的预期,并且这些动态可观测量的自发涨落遵循类似涨落 - 耗散的关系。这些结果共同呈现了范德瓦尔斯流体图景,为我们观察液态提供了另一个视角。