Nonergodicity transitions in colloidal suspensions with attractive interactions

J. Bergenholtz and M. Fuchs
Phys. Rev. E 59, 5706 – Published 1 May 1999
An article within the collection: PRE Milestones
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Abstract

Colloidal gel and glass transitions are investigated using the idealized mode coupling theory (MCT) for model systems characterized by short-range attractive interactions. Results are presented for adhesive hard sphere and hard core attractive Yukawa systems. According to MCT, the former system shows a critical glass transition concentration that increases significantly with introduction of a weak attraction. For the latter attractive Yukawa system, MCT predicts low temperature nonergodic states that extend to the critical and subcritical region. Several features of the MCT nonergodicity transition in this system agree qualitatively with experimental observations on the colloidal gel transition, suggesting that the gel transition is caused by a low temperature extension of the glass transition. The range of the attraction is shown to govern the way the glass transition line traverses the phase diagram relative to the critical point, analogous to findings for the fluid-solid freezing transition.

  • Received 9 March 1998

DOI:https://doi.org/10.1103/PhysRevE.59.5706

©1999 American Physical Society

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PRE Milestones

Physical Review E published its 50,000th paper in September 2015. To celebrate this, the journal presents a series of milestone papers that were published since its inception in 1993. This is an eclectic collection of papers that made significant contributions to their field, chosen by the editors. A new milestone will be added each week.

Authors & Affiliations

J. Bergenholtz

  • Fakultät für Physik, Universität Konstanz, Postfach 5560, D-78457 Konstanz, Germany

M. Fuchs

  • Physik-Department, Technische Universität München, 85747 Garching, Germany

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Issue

Vol. 59, Iss. 5 — May 1999

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