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NEUF-DIX空间项目——复杂液体扩散过程中的非平衡涨落

The NEUF-DIX space project - Non-EquilibriUm Fluctuations during DIffusion in compleX liquids.

作者信息

Baaske Philipp, Bataller Henri, Braibanti Marco, Carpineti Marina, Cerbino Roberto, Croccolo Fabrizio, Donev Aleksandar, Köhler Werner, Ortiz de Zárate José M, Vailati Alberto

机构信息

Nanotemper Technologies GmbH, Munich, Germany.

Laboratoire des Fluides Complexes et leurs Réservoirs - UMR5150, Université de Pau et des Pays de l'Adour, F-64600, Anglet, France.

出版信息

Eur Phys J E Soft Matter. 2016 Dec;39(12):119. doi: 10.1140/epje/i2016-16119-1. Epub 2016 Dec 12.

Abstract

Diffusion and thermal diffusion processes in a liquid mixture are accompanied by long-range non-equilibrium fluctuations, whose amplitude is orders of magnitude larger than that of equilibrium fluctuations. The mean-square amplitude of the non-equilibrium fluctuations presents a scale-free power law behavior q as a function of the wave vector q, but the divergence of the amplitude of the fluctuations at small wave vectors is prevented by the presence of gravity. In microgravity conditions the non-equilibrium fluctuations are fully developed and span all the available length scales up to the macroscopic size of the systems in the direction parallel to the applied gradient. Available theoretical models are based on linearized hydrodynamics and provide an adequate description of the statics and dynamics of the fluctuations in the presence of small temperature/concentration gradients and under stationary or quasi-stationary conditions. We describe a project aimed at the investigation of Non-EquilibriUm Fluctuations during DIffusion in compleX liquids (NEUF-DIX). The focus of the project is on the investigation in micro-gravity conditions of the non-equilibrium fluctuations in complex liquids, trying to tackle several challenging problems that emerged during the latest years, such as the theoretical predictions of Casimir-like forces induced by non-equilibrium fluctuations; the understanding of the non-equilibrium fluctuations in multi-component mixtures including a polymer, both in relation to the transport coefficients and to their behavior close to a glass transition; the understanding of the non-equilibrium fluctuations in concentrated colloidal suspensions, a problem closely related with the detection of Casimir forces; and the investigation of the development of fluctuations during transient diffusion. We envision to parallel these experiments with state-of-the-art multi-scale simulations.

摘要

液体混合物中的扩散和热扩散过程伴随着长程非平衡涨落,其幅度比平衡涨落大几个数量级。非平衡涨落的均方幅度呈现出作为波矢q的函数的无标度幂律行为,但由于重力的存在,小波矢处涨落幅度的发散受到抑制。在微重力条件下,非平衡涨落充分发展,并在平行于外加梯度的方向上跨越直至系统宏观尺寸的所有可用长度尺度。现有的理论模型基于线性化流体动力学,能够在存在小温度/浓度梯度以及在静态或准静态条件下,对涨落的静态和动态特性提供充分的描述。我们描述了一个旨在研究复杂液体中扩散过程中的非平衡涨落(NEUF-DIX)的项目。该项目的重点是在微重力条件下研究复杂液体中的非平衡涨落,试图解决近年来出现的几个具有挑战性的问题,例如由非平衡涨落引起的类卡西米尔力的理论预测;理解包括聚合物在内的多组分混合物中的非平衡涨落,这涉及到输运系数及其在接近玻璃化转变时的行为;理解浓胶体悬浮液中的非平衡涨落,这一问题与卡西米尔力的检测密切相关;以及研究瞬态扩散过程中涨落的发展。我们设想将这些实验与最先进的多尺度模拟并行进行。

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