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Simulations of dipolar fluids using effective many-body isotropic interactions

机译:使用有效的多体各向同性相互作用模拟偶极流体

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The partition function of a system with pairwise-additive anisotropic dipole-dipole interactions is equal to that of a hypothetical system with many-body isotropic interactions [G. Stell, Phys. Rev. Lett. 32, 286 (1974)]. The effective many-body interactions contain n-body contributions of all orders. Each contribution is known as an expansion in terms of the particle-particle distances r, and the coefficients are temperature dependent. The leading-order two-body term is the familiar -r(-6) attraction, and the leading-order three-body term is equivalent to the Axilrod-Teller interaction. In this work, a fluid of particles with the leading-order two-body and three-body interactions is compared to an equivalent dipolar soft-sphere fluid. Molecular simulations are used to determine the conditions under which the effective many-body interactions reproduce the fluid-phase structures of the dipolar system. The effective many-body interaction works well at moderately high temperatures but fails at low temperatures where particle chaining is expected to occur. It is shown that an adjustment of the coefficients of the two-body and three-body terms leads to a good description of the structure of the dipolar fluid even in the chaining regime, due primarily to the ground-state linear configuration of the three-body Axilrod-Teller interaction. The vapor-liquid phase diagrams of systems with different Axilrod-Teller contributions are determined. As the strength of the three-body interaction is increased, the critical temperature and density both decrease and disappear completely above a threshold strength, where chaining eventually suppresses the condensation transition. (C) 2015 AIP Publishing LLC.
机译:具有成对加法各向异性偶极-偶极相互作用的系统的分配函数等于具有多体各向同性相互作用的假设系统的分配函数[G.斯特尔,物理。牧师32,286(1974)]。有效的多体交互包含所有阶的n体贡献。每个贡献都被称为以粒子-粒子距离r表示的膨胀,并且系数与温度有关。前导三体项是熟悉的-r(-6)引力,而前导三体项等效于Axilrod-Teller相互作用。在这项工作中,将具有前导两体和三体相互作用的粒子流体与等效的偶极软球流体进行比较。分子模拟用于确定有效多体相互作用重现偶极系统流体相结构的条件。有效的多体相互作用在中等高温下效果很好,但在预计会发生颗粒链接的低温下则失效。结果表明,对两体和三体项的系数的调整即使在链状条件下也能很好地描述偶极流体的结构,这主要是由于三态的基态线性构型身体Axilrod-Teller相互作用。确定了具有不同Axilrod-Teller贡献的系统的汽液相图。随着三体相互作用强度的增加,临界温度和密度在阈值强度以上都降低并完全消失,在该强度处,链最终抑制了缩合转变。 (C)2015 AIP Publishing LLC。

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