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- W2046376314 abstract "We employ the principle of dynamic equivalence between soft-sphere and hard-sphere fluids [Phys. Rev. E 68, 011405 (2003)] to describe the interplay of the effects of varying the density $n$, the temperature $T$, and the softness (characterized by a softness parameter ${ensuremath{nu}}^{ensuremath{-}1}$) on the dynamics of glass-forming soft-sphere liquids in terms of simple scaling rules. The main prediction is the existence of a dynamic universality class associated with the hard-sphere fluid, constituted by the soft-sphere systems whose dynamic parameters depend on $n$, $T$, and $ensuremath{nu}$ only through the reduced density ${n}^{*}ensuremath{equiv}n{ensuremath{sigma}}_{mathrm{HS}}({T}^{*},ensuremath{nu})$. A number of scaling properties observed in recent experiments and simulations involving glass-forming fluids with repulsive short-range interactions are found to be a direct manifestation of this general dynamic equivalence principle." @default.
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- W2046376314 date "2011-10-03" @default.
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- W2046376314 title "Density-Temperature-Softness Scaling of the Dynamics of Glass-Forming Soft-Sphere Liquids" @default.
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- W2046376314 doi "https://doi.org/10.1103/physrevlett.107.155701" @default.
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