arXiv · 2007.13443
Binding self-propelled topological defects in active turbulence
Abstract
We report on the emergence of stable self-propelled bound defects in monolayers of active nematics, which form virtual full-integer topological defects in the form of vortices and asters. Through numerical simulations and analytical arguments, we identify the phase-space of the bound defect formation in active nematic monolayers. It is shown that an intricate synergy between the nature of active stresses and the flow-aligning behaviour of active particles can stabilise the motion of self-propelled positive half-integer defects into specific bound structures. Our findings uncover new complexities in active nematics with potential for triggering new experiments and theories.
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Kristian Thijssen, Amin Doostmohammadi. 2020-07-27. Binding self-propelled topological defects in active turbulence. https://doi.org/10.1103/physrevresearch.2.042008
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