collaborators

5 papers

physics.soc-ph2026

The nestedness of higher-order networks

Timothy LaRock, Yanting Zhang, Jean-Gabriel Young +3

In contrast to dyadic interactions, higher-order interactions may contain one another, with subgroups naturally embedded within larger groups. These containment patterns arise empi…

q-bio.PE2026

The interplay of network structure and correlated infectious traits in epidemic models

Abhay Gupta, Nicholas W. Landry

Individual contributions to the spread of an epidemic vary widely due to an individual's location in a social network and their intrinsic ability to spread or contract diseases. Wh…

physics.soc-ph2026

Higher-order interactions at scientific conferences influence team formation

Emma Zajdela, Nicholas W. Landry

Cooperation enables teams to solve complex problems that one individual alone cannot address. In science, collaborative teams have become the predominant way through which progress…

physics.soc-ph2026

HIF: The hypergraph interchange format for higher-order networks

Martín Coll, Cliff A. Joslyn, Nicholas W. Landry +5

Many empirical systems contain complex interactions of arbitrary size, representing, for example, chemical reactions, social groups, co-authorship relationships, and ecological dep…

physics.soc-ph2026

A Blue Start: A large-scale pairwise and higher-order social network dataset

Alyssa Smith, Ilya Amburg, Sagar Kumar +2

Large-scale networks have been instrumental in shaping how we think about social systems, and have undergirded many foundational results in mathematical epidemiology, computational…