Fractal dimension of star clusters

Fuente: arXiv
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Autori principali: Ussipov, N., Akhmetali, A., Zaidyn, M., Akniyazova, A., Sakan, A., Kalambay, M., Shukirgaliyev, B.
Natura: Preprint
Pubblicazione: 2024
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author Ussipov, N.
Akhmetali, A.
Zaidyn, M.
Akniyazova, A.
Sakan, A.
Kalambay, M.
Shukirgaliyev, B.
author_facet Ussipov, N.
Akhmetali, A.
Zaidyn, M.
Akniyazova, A.
Sakan, A.
Kalambay, M.
Shukirgaliyev, B.
contents Quantitative analysis of the structure of star clusters is crucial for understanding their formation and evolution. In this article, we explore the application of fractal dimension analysis to study the evolution of star clusters, also fractal dimension, a concept from fractal geometry, provides a quantitative measure of the complexity and self-similarity of geometric objects. By considering star clusters as complex networks, we employ the box covering method to calculate their fractal dimension. Our methodology combines the well-established Minimum Spanning Tree (MST) and Box-Covering (BC) methods and using these methods, the fractal structure of the clusters was determined. It was revealed that star clusters disintegrate at a fractal dimension of 1.3 and obey a power law. It should be noted that the obtained result was compared with the results of the McLuster.
format Preprint
id arxiv_https___arxiv_org_abs_2406_05695
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Fractal dimension of star clusters
Ussipov, N.
Akhmetali, A.
Zaidyn, M.
Akniyazova, A.
Sakan, A.
Kalambay, M.
Shukirgaliyev, B.
Astrophysics of Galaxies
Quantitative analysis of the structure of star clusters is crucial for understanding their formation and evolution. In this article, we explore the application of fractal dimension analysis to study the evolution of star clusters, also fractal dimension, a concept from fractal geometry, provides a quantitative measure of the complexity and self-similarity of geometric objects. By considering star clusters as complex networks, we employ the box covering method to calculate their fractal dimension. Our methodology combines the well-established Minimum Spanning Tree (MST) and Box-Covering (BC) methods and using these methods, the fractal structure of the clusters was determined. It was revealed that star clusters disintegrate at a fractal dimension of 1.3 and obey a power law. It should be noted that the obtained result was compared with the results of the McLuster.
title Fractal dimension of star clusters
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2406.05695