论文标题

使用反馈控制

Non-Newtonian Topological Mechanical Metamaterials Using Feedback Control

论文作者

Sirota, Lea, Ilan, Roni, Shokef, Yair, Lahini, Yoav

论文摘要

我们介绍了一种设计拓扑机械超材料的方法,不受牛顿动力学的约束。机械晶格中的单元细胞受到通过自主控制器处理的主动反馈力,预先编程,以实时生成所需的局部响应。例如,我们专注于量子模型,该模型是一个具有定向复杂耦合术语的两波段系统,违反了牛顿的第三定律。我们证明,只有通过闭环控制,才能在类似的机械系统中实现以手性边缘模式为特征的所需拓扑阶段。然后,我们证明我们的方法使能够在机械超材料中首次实现Haldane模型的修改版本。在这里,复杂值的耦合的两极化,该方式在晶格的相反边缘沿相同方向传播,并通过反向传播扩散的体积模式平衡。所提出的方法是一般且灵活的,可用于实现任意晶格参数,例如非本地或非线性耦合,时间依赖性势,非热动力学等,在一个平台上。

We introduce a method to design topological mechanical metamaterials that are not constrained by Newtonian dynamics. The unit cells in a mechanical lattice are subjected to active feedback forces that are processed through autonomous controllers, pre-programmed to generate the desired local response in real-time. As an example, we focus on the quantum Haldane model, which is a two-band system with directional complex coupling terms, violating Newton's third law. We demonstrate that the required topological phase, characterized by chiral edge modes, can be achieved in an analogous mechanical system only with closed-loop control. We then show that our approach enables to realize, for the first time, a modified version of the Haldane model in a mechanical metamaterial. Here, the complex-valued couplings are polarized in a way that modes on opposite edges of a lattice propagate in the same direction, and are balanced by counter-propagating diffusive bulk modes. The proposed method is general and flexible, and could be used to realize arbitrary lattice parameters, such as non-local or nonlinear couplings, time dependent potentials, non-Hermitian dynamics, and more, on a single platform.

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