Diffusive regimes in a two-dimensional chiral fluid

Author:

Vega Reyes FranciscoORCID,López-Castaño Miguel A.,Rodríguez-Rivas ÁlvaroORCID

Abstract

AbstractDiffusion is a fundamental aspect of transport processes in biological systems, and thus, in the development of life itself. And yet, the diffusive dynamics of active fluids with directed rotation, known as chiral fluids, has not been analyzed in detail so far. Here, we describe the diffusive regimes of a two-dimensional chiral fluid, composed in this case of a set of identical disk-shaped rotors. We found strong experimental evidence of odd diffusion. This odd diffusion emerges in the form of a two-dimensional tensor with an antisymmetric part. In particular, we show that chiral diffusion is complex, featuring transitions between super, quasi-normal, and sub diffusion, and very slowly aging. Moreover, we show that the diffusion tensor elements, including off-diagonal elements; i.e., odd diffusion coefficient, change sign according to flow vorticity. Therefore, the chiral fluid has a self regulated diffusion, controlled by its vorticity.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy

Cited by 9 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Self-reverting vortices in chiral active matter;Communications Physics;2024-05-11

2. Phase Coexistence and Edge Currents in the Chiral Lennard-Jones Fluid;Physical Review Letters;2024-04-15

3. Macroscopic, artificial active matter;National Science Open;2024-04-01

4. Emergent phenomena in chiral active matter;National Science Open;2024-04-01

5. Oscillatory Force Autocorrelations in Equilibrium Odd-Diffusive Systems;Physical Review Letters;2024-01-31

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