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Stochastic migrations of Marangoni surfers between two lobes of a dumbbell-shaped confinement. | LitMetric

Stochastic migrations of Marangoni surfers between two lobes of a dumbbell-shaped confinement.

Soft Matter

Department of Physics, Indian Institute of Technology Jammu, NH-44, Jagti Village, Jammu, J & K, India.

Published: November 2024

AI Article Synopsis

  • * Our analysis revealed that configurations (or distributions) with equal numbers of disks in each lobe of the chamber are the most stable due to fewer interactions among disks.
  • * Additionally, we found that the activity of the disks decreases over time, leading to a stretched exponential decay pattern, which we connected to a model of the disks as chiral active particles.

Article Abstract

We report an experimental investigation on the stochastic migration dynamics of Marangoni surfers (camphor-infused paper disks) between the two lobes of a dumbbell-shaped chamber. We characterize the migration dynamics using survival analysis of a configuration, wherein a configuration represents a distinct distribution of disks between the lobes. We observe that a configuration's stability decreases with increasing pairwise interactions. Consequently, the configuration with equal partitioning of disks between the lobes-that is exactly one-half of disks in each lobe for even-numbered systems but with one extra disk in either of the lobes for odd-numbered systems-has the lowest pairwise interactions, thus is always the most stable configuration. Furthermore, all configurations exhibit a stretched exponential decay with time, which is ascribed to a disk's activity decay with time or "aging"-a phenomenon validated by modeling a camphor disk as a chiral active particle (CAP) as initially proposed by Cruz

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Source
http://dx.doi.org/10.1039/d4sm00914bDOI Listing

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