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Fundamental diagram of vibration-driven vehicles

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arxiv 2311.01211 v1 pith:AUDOBLXH submitted 2023-11-02 physics.soc-ph

classification physics.soc-ph
keywords speedagentsdensitiesdensitydiagramfundamentalmediumone-dimensional
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In this study, we conducted experimental investigations into the fundamental diagram of vibration-driven vehicles (VDV) in a one-dimensional array. As these mechanical agents interact solely through collisions, their mean speed remains nearly constant at low and medium densities. However, there is a reduction of between 25% and 40% when the lineal density approaches the inverse of the contact distance. Remarkably, in this one-dimensional system, the outcome is significantly influenced by the order in which agents, sorted by their free speeds, are gradually introduced into the experiment. While a significant speed difference is observed at low and medium densities based on this ordering, both curves eventually converge to the same speed at maximum density. Moreover, the attained speed in saturated systems is slower than the speed of the slowest agent.

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Cited by 2 Pith papers

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    Cluster stability in photoactive granular particles is set by the balance of adsorption and desorption, captured by κ = const·(D/v)/N_T^{3/2}, with stable clusters only when κ < 0.3849 and initial size exceeds a criti...

  2. Collective dynamics of macroscopic photoactive matter under alternating excitation patterns

    cond-mat.soft 2026-03 accept novelty 5.0 of 10

    Photoactive particles robustly accumulate in less-active regions under alternating light; responsiveness is controlled by cluster size and switching period, as captured by an extended kinetic model.

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