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August 20, 20250 citationsOpen Access

Note for Molecular Line SuperHyperGraphs and Iterated Line SuperHyperGraphs

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TFTsunenori Fujita

Key Points

  • New definitions of molecular line superhypergraphs and iterated line superhypergraphs enhance the understanding of complex relationships.
  • The study identifies connections between hypergraphs and line graphs relevant to chemical graph theory.
  • We explore the recursive properties of superhypergraphs for capturing hierarchical connections in molecular contexts.
  • Applications in chemistry may improve how we represent chemical structures and interactions through these advanced graph types.

Abstract

Hypergraphs extend classical graphs by allowing hyperedges to connect any nonempty subset of vertices, thereby capturing complex group-level relationships. Superhypergraphs advance this framework by introducing recursively nested powerset layers, enabling the representation of hierarchical and self-referential connections among hyperedges. A line graph encodes the adjacencies between edges of an original graph by transforming each edge into a vertex and connecting two vertices if their corresponding edges share a common endpoint. An iterated line graph arises from the repeated application of the line graph construction, where each iteration takes the previous line graph as its input. In the field of chemistry, concepts such as molecular graphs and chemical graphs are well established, and the theories of hypergraphs, line graphs, and superhypergraphs have also been investigated within this context. In this paper, we introduce the notions of Molecular Line SuperHyperGraphs and Molecular Iterated Line SuperHyperGraphs, providing formal definitions and examining their potential applications.

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Cite This Study

Tsunenori Fujita (2025) studied this question.

synapsesocial.com/papers/68af55dead7bf08b1eadc9edhttps://doi.org/10.26434/chemrxiv-2025-nrfxz
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