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Beta relaxation theory for simple systems : some addenda

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Beta_relaxation_theory_for_simple_systems.pdf
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1992

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Götze, Wolfgang
Hildebrand, S.
Latz, Arnulf

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Zeitschrift für Physik B Condensed Matter. 1992, 87(1), pp. 43-49. ISSN 0722-3277. eISSN 1431-584X. Available under: doi: 10.1007/BF01308255

Zusammenfassung

The evolution of the tagged particle probability density for a hard sphere system is evaluated within the B-relaxation window. Relaxation curves obtained by molecular dynamics studies by Barrat, Hansen and Roux for a binary mixture are analyzed quantitatively with B-relaxation scaling formulae. The dynamical light scattering data obtained by Pusey and van Megen for colloidal suspensions are described by the combined a- and B-relaxation scaling results. The range of validity of asymptotic expressions near a glass transition singularity is discussed for the Debye-Waller factor as a function of packing fraction. The applied theoretical formulae are those of the mode coupling theory for the liquid to glass transition.

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530 Physik

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ISO 690FUCHS, Matthias, Wolfgang GÖTZE, S. HILDEBRAND, Arnulf LATZ, 1992. Beta relaxation theory for simple systems : some addenda. In: Zeitschrift für Physik B Condensed Matter. 1992, 87(1), pp. 43-49. ISSN 0722-3277. eISSN 1431-584X. Available under: doi: 10.1007/BF01308255
BibTex
@article{Fuchs1992relax-9361,
  year={1992},
  doi={10.1007/BF01308255},
  title={Beta relaxation theory for simple systems : some addenda},
  number={1},
  volume={87},
  issn={0722-3277},
  journal={Zeitschrift für Physik B Condensed Matter},
  pages={43--49},
  author={Fuchs, Matthias and Götze, Wolfgang and Hildebrand, S. and Latz, Arnulf}
}
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    <dcterms:abstract xml:lang="eng">The evolution of the tagged particle probability density for a hard sphere system is evaluated within the B-relaxation window. Relaxation curves obtained by molecular dynamics studies by Barrat, Hansen and Roux for a binary mixture are analyzed quantitatively with B-relaxation scaling formulae. The dynamical light scattering data obtained by Pusey and van Megen for colloidal suspensions are described by the combined a- and B-relaxation scaling results. The range of validity of asymptotic expressions near a glass transition singularity is discussed for the Debye-Waller factor as a function of packing fraction. The applied theoretical formulae are those of the mode coupling theory for the liquid to glass transition.</dcterms:abstract>
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