Doubly chiral active Brownian particles with competing intrinsic rotation and translation-rotation coupling exhibit topologically protected boundary transport without backscattering, as shown by theory, simulation, and a vibrobot experiment.
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cond-mat.soft 2years
2026 2representative citing papers
Edge fluxes in chiral fluids equal the average odd stress in confined geometries or the jump in odd stress across interfaces in phase-separated systems.
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Robust Topologically Protected Edge Transport in Doubly Chiral Active Particles
Doubly chiral active Brownian particles with competing intrinsic rotation and translation-rotation coupling exhibit topologically protected boundary transport without backscattering, as shown by theory, simulation, and a vibrobot experiment.
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Equation of state for the edge flow of chiral colloidal fluids
Edge fluxes in chiral fluids equal the average odd stress in confined geometries or the jump in odd stress across interfaces in phase-separated systems.