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Revisiting small-world network models: exploring technical realizations and the equivalence of the Newman–Watts and Harary modelsRevisiting small-world network models: exploring technical realizations and the equivalence of the Newman–Watts and Harary models

Other Titles
Revisiting small-world network models: exploring technical realizations and the equivalence of the Newman–Watts and Harary models
Authors
Son, SeoraChoi, Eun JiLee, Sang Hoon
Issue Date
Dec-2023
Publisher
한국물리학회
Keywords
Harary graph; Newman–Watts model; Small-world network
Citation
Journal of the Korean Physical Society, v.83, no.11, pp 879 - 889
Pages
11
Indexed
SCIE
SCOPUS
KCI
Journal Title
Journal of the Korean Physical Society
Volume
83
Number
11
Start Page
879
End Page
889
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/68053
DOI
10.1007/s40042-023-00921-8
ISSN
0374-4884
1976-8524
Abstract
We address the relatively less known facts on the equivalence and technical realizations surrounding two network models showing the “small-world” property, namely the Newman–Watts and the Harary models. We provide the most accurate (in terms of faithfulness to the original literature) versions of these models to clarify the deviation from them existing in their variants adopted in one of the most popular network analysis packages. The difference in technical realizations of those models could be conceived as minor details, but we discover significantly notable changes caused by the possibly inadvertent modification. For the Harary model, the stochasticity in the original formulation allows a much wider range of the clustering coefficient and the average shortest path length. For the Newman–Watts model, due to the drastically different degree distributions, the clustering coefficient can also be affected, which is verified by our higher-order analytic derivation. During the process, we discover the equivalence of the Newman–Watts (better known in the network science or physics community) and the Harary (better known in the graph theory or mathematics community) models under a specific condition of restricted parity in variables, which would bridge the two relatively independently developed models in different fields. Our result highlights the importance of each detailed step in constructing network models and the possibility of deeply related models, even if they might initially appear distinct in terms of the time period or the academic disciplines from which they emerged. © 2023, The Korean Physical Society.
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자연과학대학 (수학물리학부)
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