Off-tangent chiral active forces are sufficient to produce rotating active nematic order in simulations, with handedness tunable by filament stiffness, supported by gliding assays.
Factors influencing fast ion transport in glyme-based electrolytes for rechargeable lithium–air batteries
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Gliding microtubules exhibit tunable collective rotation driven by chiral active forces
Off-tangent chiral active forces are sufficient to produce rotating active nematic order in simulations, with handedness tunable by filament stiffness, supported by gliding assays.