Active nematic membranes show a continuous defect binding-unbinding transition to turbulence when activity exceeds a threshold scaling as alpha squared over bending stiffness, with persistent order-shape correlations.
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cond-mat.soft 2years
2026 2verdicts
UNVERDICTED 2representative citing papers
Magnetoviscous coupling in ferrofluids induces cross-field propulsion in spherical active colloids under uniform magnetic fields through emergent reorientation torque.
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Defect binding-unbinding transition in active nematic membranes
Active nematic membranes show a continuous defect binding-unbinding transition to turbulence when activity exceeds a threshold scaling as alpha squared over bending stiffness, with persistent order-shape correlations.
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Directional Symmetry Breaking of Spherical Active Colloids by Magnetoviscous Coupling
Magnetoviscous coupling in ferrofluids induces cross-field propulsion in spherical active colloids under uniform magnetic fields through emergent reorientation torque.