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Updated: Jun 20, 2026

Forming, Confining, and Observing Microtubule-Based Active Nematics
Published on: January 13, 2023
Shape dictates the motion of topological defects in active nematics
Giacomo Marco La Montagna1, Sumeja Bureković2,3, Ananyo Maitra1,4
1CNRS, Laboratoire de Physique Théorique et Modélisation, UMR 8089, CY Cergy Paris Université, F-95032 Cergy-Pontoise Cedex, France.
None:
Topological defects in systems with liquid-crystalline order are crucial in determining their large-scale properties. In active systems, they are known to have properties impossible at equilibrium: for example, +1/2 defects in nematically ordered systems self-propel. While some previous theoretical descriptions relied on assuming that the defect shape remains unperturbed by activity, we show that this assumption can lead to inconsistent predictions. We compute the shape of -1/2 defects and show that the one of +1/2 is intimately related to their self-propulsion speed. Our analytical predictions are corroborated via numerical simulations of a generic active nematic theory.
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