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arxiv: 2504.08676 · v1 · pith:XW6ZIRZ6new · submitted 2025-04-11 · ❄️ cond-mat.soft · nlin.AO· physics.bio-ph

Optimal Control in Soft and Active Matter

classification ❄️ cond-mat.soft nlin.AOphysics.bio-ph
keywords controlactivesoftoptimalmattersystemsdynamicslife
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Soft and active condensed matter represent a class of fascinating materials that we encounter in our everyday lives -- and constitute life itself. Control signals interact with the dynamics of these systems, and this influence is formalized in control theory and optimal control. Recent advances have employed various control-theoretical methods to design desired dynamics, properties, and functionality. Here we provide an introduction to optimal control aimed at physicists working with soft and active matter. We describe two main categories of control, feedforward control and feedback control, and their corresponding optimal control methods. We emphasize their parallels to Lagrangian and Hamiltonian mechanics, and provide a worked example problem. Finally, we review recent studies of control in soft, active, and related systems. Applying control theory to soft, active, and living systems will lead to an improved understanding of the signal processing, information flows, and actuation that underlie the physics of life.

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  1. Linear optimal protocol for physical constraints in weakly driven processes

    cond-mat.stat-mech 2026-06 unverdicted novelty 5.0

    In linear response for weakly driven processes, the optimal protocol under constraints on the derivative is linear (constant speed), with minimal work depending only on the integrated relaxation function.