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Non-exponential relaxation of density fluctuations in strongly interacting colloidal suspensions

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  • Nägale, Gerhard
  • Baur, Peter
  • Klein, Rudolf

Abstract

The relaxation of density fluctuations is characterized by the experimentally accessible dynamic structure factor S(k,t). Whereas the short-time behaviour of this quantity is well understood, its long-time characteristics are more difficult to determine since memory effects become important giving rise to non-exponential relaxation. Formally, exact results for these memory effects can be derived on the basis of the many-body Smoluchowski equation, but for their evaluation one has to introduce approximations. Previous results, obtained by a mode-coupling approximation, were used to calculate a mean relaxation time τ (k) of S(k,t) and a reduced memory function Δ(k), which characterizes the deviation of S (k,t) from a simple exponential decay in time. A comparison with experimental results showed only partial agreement. Whereas theory predicts Δ(k → 0) = 0, the experiments found that Δ(k) approaches a finite value in this limit. It will be shown that this discrepancy is due to polydispersity effects. We have improved the mode-coupling approximation and have extended the theory to polydisperse systems. It is remarkable that fairly small amounts of polydispersity give indeed rise to a finite value of Δ(k → 0) for the dynamic structure factor of the polydisperse system in contrast to a vanishing Δ(k → 0) for monodisperse suspensions.

Suggested Citation

  • Nägale, Gerhard & Baur, Peter & Klein, Rudolf, 1996. "Non-exponential relaxation of density fluctuations in strongly interacting colloidal suspensions," Physica A: Statistical Mechanics and its Applications, Elsevier, vol. 231(1), pages 49-61.
  • Handle: RePEc:eee:phsmap:v:231:y:1996:i:1:p:49-61
    DOI: 10.1016/0378-4371(95)00462-9
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    References listed on IDEAS

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    1. Nägele, G. & Medina-Noyola, M. & Klein, R. & Arauz-Lara, J.L., 1988. "Time-dependent self-diffusion in model suspensions of highly charged Brownian particles," Physica A: Statistical Mechanics and its Applications, Elsevier, vol. 149(1), pages 123-163.
    2. Osborn, C. Tim & Liacuna, Felix & Linsenbigler, Michael, 1992. "Conservation Reserve Programs: Enrollment Statistics for Signup Periods, 1-11 and Fiscal Years 1990-92," Statistical Bulletin 154773, United States Department of Agriculture, Economic Research Service.
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