Achieving designed texture and flows in bulk active nematics using optimal control theory

S Saptorshi Ghosh (Martin A. Fisher School of Physics, Brandeis University , Waltham, Massachusetts 02453,) A Aparna Baskaran (Martin A. Fisher School of Physics, Brandeis University , Waltham, Massachusetts 02453,) M Michael F. Hagan (Martin A. Fisher School of Physics)

Abstract

Being intrinsically nonequilibrium, active materials can potentially perform functions that would be thermodynamically forbidden in passive materials. However, active systems have diverse local attractors that correspond to distinct dynamical states, many of which exhibit chaotic turbulent-like dynamics and thus cannot perform work or useful functions. Designing such a system to choose a specific dynamical state is a formidable challenge. Motivated by recent advances enabling optogenetic control of experimental active materials, we describe an optimal control theory framework that identifies a spatiotemporal sequence of light-generated activity that drives an active nematic system toward a prescribed dynamical steady state. Active nematics are unstable to spontaneous defect proliferation and chaotic streaming dynamics in the absence of control. We demonstrate that optimal control theory can compute activity fields that redirect the dynamics into a variety of alternative dynamical programs and functions. This includes dynamically reconfiguring between states, selecting and stabilizing emergent behaviors that do not correspond to attractors, and are hence unstable in the uncontrolled system. Our results provide a roadmap to leverage optical control methods to rationally design structure, dynamics, and function in a wide variety of active materials.

Article Details

Volume / Issue Vol. 162, Issue 13
Published April 07, 2025
ISSN 0021-9606
Publisher American Institute of Physics

Journal Info

The Journal of Chemical Physics

American Institute of Physics

ISSN: 0021-9606 Physical Sciences

Authors (3)

S

Saptorshi Ghosh

Martin A. Fisher School of Physics, Brandeis University , Waltham, Massachusetts 02453,

A

Aparna Baskaran

Martin A. Fisher School of Physics, Brandeis University , Waltham, Massachusetts 02453,

M

Michael F. Hagan

Martin A. Fisher School of Physics