We consider the size and structure of the automorphism groups of a variety of empirical ‘real-world’ networks and find that, in contrast to classical random graph models, many real-world networks are richly symmetric. We construct a practical network automorphism group decomposition, relate automorphism group structure to network topology and discuss generic forms of symmetry and their origin in real-world networks. We also comment on how symmetry can affect network redundancy and robustness
Many real-world complex networks contain a significant amount of structural redundancy, in which mul...
Symmetries in graphs and networks are closely related to the fields of group theory (more specifical...
Precisely quantifying the heterogeneity or disorder of network systems is important and desired in s...
AbstractWe consider the size and structure of the automorphism groups of a variety of empirical ‘rea...
AbstractWe consider the size and structure of the automorphism groups of a variety of empirical ‘rea...
The analysis of symmetry is a main principle in natural sciences, especially physics. For network sc...
In this review we establish various connections between complex networks and symmetry. While special...
© 2020 Elsevier Ltd Leveraging on graph automorphic properties of complex networks (CNs), this study...
The existence of symmetries in complex networks has a significant effect on network dynamic behaviou...
Virtually all network analyses involve structural measures between pairs of vertices, or of the vert...
The description of a complex system like gene regulation of a cell or a brain of an animal in terms ...
The description of a complex system like gene regulation of a cell or a brain of an animal in terms ...
The surrounding of a vertex in a network can be more or less symmetric. We derive measures of a spec...
The aim of this thesis is to investigate the problem of an approximate symmetry of complex networks....
<p>(Colors are only here to help seing the symmetry axes, they have no particular meaning). <b>A</b>...
Many real-world complex networks contain a significant amount of structural redundancy, in which mul...
Symmetries in graphs and networks are closely related to the fields of group theory (more specifical...
Precisely quantifying the heterogeneity or disorder of network systems is important and desired in s...
AbstractWe consider the size and structure of the automorphism groups of a variety of empirical ‘rea...
AbstractWe consider the size and structure of the automorphism groups of a variety of empirical ‘rea...
The analysis of symmetry is a main principle in natural sciences, especially physics. For network sc...
In this review we establish various connections between complex networks and symmetry. While special...
© 2020 Elsevier Ltd Leveraging on graph automorphic properties of complex networks (CNs), this study...
The existence of symmetries in complex networks has a significant effect on network dynamic behaviou...
Virtually all network analyses involve structural measures between pairs of vertices, or of the vert...
The description of a complex system like gene regulation of a cell or a brain of an animal in terms ...
The description of a complex system like gene regulation of a cell or a brain of an animal in terms ...
The surrounding of a vertex in a network can be more or less symmetric. We derive measures of a spec...
The aim of this thesis is to investigate the problem of an approximate symmetry of complex networks....
<p>(Colors are only here to help seing the symmetry axes, they have no particular meaning). <b>A</b>...
Many real-world complex networks contain a significant amount of structural redundancy, in which mul...
Symmetries in graphs and networks are closely related to the fields of group theory (more specifical...
Precisely quantifying the heterogeneity or disorder of network systems is important and desired in s...