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
Expressions for translational and rotational self-propulsion velocities are derived for spherical phoretic swimmers in fluids with odd viscosity, covering axisymmetric and non-axisymmetric surface coatings.
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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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Self-phoretic colloids in chiral active fluids
Expressions for translational and rotational self-propulsion velocities are derived for spherical phoretic swimmers in fluids with odd viscosity, covering axisymmetric and non-axisymmetric surface coatings.