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Long-range correlations in smoke-particle aggregates

Journal of Physics A Mathematical and General · 1979 · Vol. 12(5) · pp. L109–L117
Stephen R. ForrestThomas A. Witten

Abstract

Ultrafine smoke particles stick together to form chain-like aggregates. It is found that the particle density has long-range correlations of the same form in iron, zinc of silicon dioxide aggregates. The correlation data suggest a power-law spatial dependence giving a Hausdorff dimension between 1.7 and 1.9. The authors discuss the consistency of these results with a model based on percolation. They also compare their results with a random-walk model, which has a nominal Hausdorff dimension of 2.

Stochastic processes and statistical mechanicsTheoretical and Computational PhysicsComplex Network Analysis TechniquesRange (aeronautics)Hausdorff dimensionPercolation (cognitive psychology)Statistical physicsConsistency (knowledge bases)Particle (ecology)Dimension (graph theory)Power lawFractal dimensionHausdorff space
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References
<i>Fractals: Form, Chance, and Dimension</i>
Physics Today · 1979 · 2,161 citations
Ultrafine metal particles
Journal of Applied Physics · 1976 · 1,608 citations
Spectral Analysis and its Applications.
Journal of the American Statistical Association · 1969 · 5,019 citations
An introduction to probability theory and its applications
Journal of the Franklin Institute · 1958 · 29,713 citations
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