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在球形表面上生长的扩散限制凝聚簇的分形维数。

Fractal dimension of diffusion-limited aggregation clusters grown on spherical surfaces.

作者信息

Tenti J M, Hernández Guiance S N, Irurzun I M

机构信息

Facultad de Ciencias Exactas, Instituto de Investigaciones Fisicoquímicas Teóricas y Aplicadas, CCT La Plata, Universidad Nacional de La Plata, B1904 La Plata, Buenos Aires, Argentine Republic.

出版信息

Phys Rev E. 2021 Jan;103(1-1):012138. doi: 10.1103/PhysRevE.103.012138.

Abstract

In this work we study the fractal properties of diffusion-limited aggregation (DLA) clusters grown on spherical surfaces. Diffusion-limited aggregation clusters, or DLA trees, are highly branched fractal clusters formed by the adhesion of particles. In two-dimensional media, DLA clusters have a fractal dimension D_{f}=1.70 in the continuous limit. In some physical systems, the existence of characteristic lengths leads us to model them as discrete systems. Such characteristic lengths may result also from limitations in measuring instruments, for example, the resolution of biomedical imaging systems. We simulate clusters for different particle sizes and examine the influence of discretization by exploring the systems in terms of the relationship between the particle size r and the radius of the sphere R. We also study the effect of stereographic projection on the fractal properties of DLA clusters. Both discretization and projection alter the fractal dimension of DLA clusters grown on curved surfaces and must be considered in the interpretation of photographic biomedical images.

摘要

在这项工作中,我们研究了在球形表面上生长的扩散限制凝聚(DLA)簇的分形特性。扩散限制凝聚簇,即DLA树,是由粒子粘附形成的高度分支的分形簇。在二维介质中,DLA簇在连续极限下具有分形维数D_f = 1.70。在一些物理系统中,特征长度的存在使我们将它们建模为离散系统。这种特征长度也可能源于测量仪器的限制,例如生物医学成像系统的分辨率。我们针对不同的粒子大小模拟簇,并通过探索粒子大小r与球体半径R之间的关系来研究离散化的影响。我们还研究了立体投影对DLA簇分形特性的影响。离散化和投影都会改变在弯曲表面上生长的DLA簇的分形维数,并且在解释生物医学摄影图像时必须予以考虑。

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