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Directionality-Induced Jamming in Multiplex Networks

Mateo Bouchet1,2, Alejandro Tejedor1,2,*, Xiangrong Wang3,†, and Yamir Moreno1,2,‡

  • *Contact author: alej.tejedor@gmail.com
  • †Contact author: xiangrong_wang@outlook.com
  • ‡Contact author: yamir.moreno@gmail.com

Phys. Rev. Lett. 136, 207401 – Published 19 May, 2026

DOI: https://doi.org/10.1103/f1nb-vgms

Abstract

We study diffusion on multiplex networks with directed interlayer couplings. We demonstrate both numerically and analytically that even with undirected layers, interlayer directionality alone reproduces superdiffusion and the prime regime. We further reveal a new phenomenon, the directionality-induced jamming, whereby directed interlayer links hinder diffusion, fragmenting the system into dynamically disconnected components and preventing convergence to the steady state of the diffusion process. Via an optimization process, we show that this new regime is attainable in both toy models and real-world topologies. These findings underscore the crucial role of interlayer link directionality in shaping the emergent behavior of multiplex systems, with potential implications for the design and control of such systems.

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