Institute for Bioengineering of Catalonia (IBEC), Barcelona Institute for Science and Technology (BIST), Barcelona, Spain.
University of Grenoble Alpes, CNRS, Grenoble INP, Institut Néel, Grenoble, France.
Nat Commun. 2021 Aug 3;12(1):4691. doi: 10.1038/s41467-021-24948-2.
Collective guidance of out-of-equilibrium systems without using external fields is a challenge of paramount importance in active matter, ranging from bacterial colonies to swarms of self-propelled particles. Designing strategies to guide active matter and exploiting enhanced diffusion associated to its motion will provide insights for application from sensing, drug delivery to water remediation. However, achieving directed motion without breaking detailed balance, for example by asymmetric topographical patterning, is challenging. Here we engineer a two-dimensional periodic topographical design with detailed balance in its unit cell where we observe spontaneous particle edge guidance and corner accumulation of self-propelled particles. This emergent behaviour is guaranteed by a second-order non-Hermitian skin effect, a topologically robust non-equilibrium phenomenon, that we use to dynamically break detailed balance. Our stochastic circuit model predicts, without fitting parameters, how guidance and accumulation can be controlled and enhanced by design: a device guides particles more efficiently if the topological invariant characterizing it is non-zero. Our work establishes a fruitful bridge between active and topological matter, and our design principles offer a blueprint to design devices that display spontaneous, robust and predictable guided motion and accumulation, guaranteed by out-of-equilibrium topology.
在非平衡系统中进行集体引导而不使用外部场是活跃物质领域中至关重要的挑战,涵盖了从细菌菌落到自主推进粒子的群体。设计引导活跃物质的策略并利用与其运动相关的增强扩散将为从传感、药物输送到水修复等应用提供见解。然而,要在不打破详细平衡的情况下实现定向运动,例如通过非对称地形图案化,是具有挑战性的。在这里,我们设计了一种具有详细平衡的二维周期性地形设计,在其单元中观察到自发的粒子边缘引导和自主推进粒子的角聚集。这种新兴行为由二阶非厄米 skin 效应保证,这是一种拓扑鲁棒的非平衡现象,我们利用它来动态打破详细平衡。我们的随机电路模型无需拟合参数就预测了如何通过设计来控制和增强引导和聚集:如果表征器件的拓扑不变量不为零,则该器件可以更有效地引导粒子。我们的工作在活跃物质和拓扑物质之间建立了一个富有成效的桥梁,我们的设计原则为设计能够显示自发、稳健和可预测的引导运动和聚集的器件提供了蓝图,这是由非平衡拓扑保证的。