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Effect of Size Polydispersity on the Nature of Lennard-Jones Liquids

机译:粒度多分散度对Lennard-Jones液体性质的影响

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Polydisperse fluids are encountered everywhere in biological and industrial processes. These fluids naturally show a rich phenomenology exhibiting fractionation and shifts in critical point and freezing temperatures. We study here the effect of size polydispersity on the basic nature of Lennard-Jones (LJ) liquids, which represent most molecular liquids without hydrogen bonds, via two- and three-dimensional molecular dynamics computer simulations. A single-component liquid constituting spherical particles and interacting via the LJ potential is known to exhibit strong correlations between virial and potential energy equilibrium fluctuations at constant volume. This correlation significantly simplifies the physical description of the liquid, and these liquids are now known as Roskilde-simple (RS) liquids. We show that this simple nature of the single-component LJ liquid is preserved even for very high polydispersities (above 40% polydispersity for the studied uniform distribution). We also investigate isomorphs of moderately polydisperse LJ liquids. Isomorphs are curves in the phase diagram of RS liquids along which structure, dynamics, and some thermodynamic quantities are invariant in dimensionless units. We find that isomorphs are a good approximation even for polydisperse LJ liquids. The theory of isomorphs thus extends readily to size polydisperse fluids and can be used to improve even further the understanding of these intriguing systems.
机译:在生物和工业过程中到处都遇到多分散液。这些流体自然显示出丰富的现象学,表现出分馏以及临界点和凝固温度的变化。我们在这里通过二维和三维分子动力学计算机模拟研究尺寸多分散度对Lennard-Jones(LJ)液体(代表大多数没有氢键的分子液体)的基本性质的影响。已知组成球形颗粒并通过LJ电势相互作用的单组分液体在恒定体积下显示出病毒和势能平衡波动之间的强相关性。这种相关性极大地简化了液体的物理描述,这些液体现在被称为罗斯基勒简单(RS)液体。我们表明,即使对于非常高的多分散性(对于所研究的均匀分布,高于40%的多分散性),也可以保留单组分LJ液体的这种简单性质。我们还研究了中等多分散LJ液体的同晶型。同晶型是RS液体相图中的曲线,沿着该曲线,结构,动力学和一些热力学量在无量纲单位中是不变的。我们发现,即使对于多分散LJ液体,同晶型也是一个很好的近似值。因此,同晶型理论很容易扩展到确定多分散流体的大小,并且可以用来进一步提高对这些引人入胜的系统的理解。

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