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- W2992124685 abstract "The analysis of the radial distribution function of a system provides a possible procedure for uncovering interaction rules between individuals out of collective movement patterns. This approach from classical statistical mechanics has revealed recently the existence of a universal scaling in systems of pedestrians, provided the potential of interaction $V(tau)$ is conveniently defined in the space of the times-to-collision $tau$ [Phys. Rev. Lett. textbf{113}, 238701 (2014)]. Here we significantly extend this result by comparing numerically the performance of completely different rules of self-avoidance in bidirectional systems and proving that all of them collapse to a common scaling both in the disordered phase ($V(tau) sim tau^{-2}$) and in the lane-formation regime ($V(tau) sim tau^{-1}$), so suggesting that these scalings represent actually a universal feature of any self-avoiding bidirectional flow." @default.
- W2992124685 created "2019-12-13" @default.
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- W2992124685 date "2019-12-06" @default.
- W2992124685 modified "2023-09-30" @default.
- W2992124685 title "General scaling in bidirectional flows of self-avoiding agents" @default.
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- W2992124685 doi "https://doi.org/10.1038/s41598-019-54977-3" @default.
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