A geometrically exact theory of nonreciprocal filaments shows nonreciprocity coupled to inertia or pre-stress amplifies and advects curvature variations, allowing selection of one-way shape morphing patterns via dissipative environmental interactions.
Autonomous life-like behavior emerging in active and flexible microstructures,
2 Pith papers cite this work. Polarity classification is still indexing.
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cond-mat.soft 2years
2026 2verdicts
UNVERDICTED 2representative citing papers
Brownian dynamics simulations map long-time diffusion of tangentially driven active polymers, finding flexibility optimizes transport at intermediate values in disordered obstacles but enhances semiflexible directed motion in dense ordered arrays via three regimes.
citing papers explorer
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Tuning nonlinear waves in nonreciprocal active filaments
A geometrically exact theory of nonreciprocal filaments shows nonreciprocity coupled to inertia or pre-stress amplifies and advects curvature variations, allowing selection of one-way shape morphing patterns via dissipative environmental interactions.
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Flexibility Controls Active-Filament Transport in Crowded Landscapes
Brownian dynamics simulations map long-time diffusion of tangentially driven active polymers, finding flexibility optimizes transport at intermediate values in disordered obstacles but enhances semiflexible directed motion in dense ordered arrays via three regimes.