arXiv · 2607.24927
Controlling Turbulent Flows in Compressible Active Nematics
Abstract
Motivated by experiments on light-patterned, quasi-2D active suspensions that exhibit large density variations, we develop a continuum theory of compressible active nematics--suspensions of apolar rods whose orientation is invariant under pi rotations. Under spatially patterned activity, the extensile isotropic active pressure expels material from high-activity regions and accumulates it in low-activity ones; an exactly solvable 1D reduction shows that the resulting density contrast is governed by a single dimensionless parameter, linear in the compressibility. Using compressibility as a tuning knob, we then steer active turbulence from high- to low-activity regions and, at sharp activity interfaces, stabilize an analytically tractable dynamical steady state: a one-dimensional chain of vortices held by soft, activity-induced confinement. Our results establish compressibility as a control parameter for density variations and turbulent flow in active nematic suspensions.
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Dimitrios Krommydas, Paarth Gulati, Aparna Baskaran, M. Cristina Marchetti. 2026-07-27. Controlling Turbulent Flows in Compressible Active Nematics. https://arxiv.org/abs/2607.24927
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