On-demand realization of topological states using Miura-folded metamaterials

Shuaifeng Li, Yubin Oh, Seong Jae Choi, Panayotis G. Kevrekidis, Jinkyu Yang
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Abstract

Recent advancements in topological metamaterials have unveiled fruitful physics and numerous applications. Whereas initial efforts focus on achieving topologically protected edge states through principles of structural symmetry, the burgeoning field now aspires to customize topological states, tailoring their emergence and frequency. Here, our study presents the realization of topological phase transitions utilizing compliant mechanisms on the facets of Miura-folded metamaterials. This approach induces two opposite topological phases, leading to topological states at the interface. Moreover, we exploit the unique folding behavior of Miura-folded metamaterials to tune the frequency of topological states and dynamically toggle their presence. Our research not only paves the way for inducing topological phase transitions in Miura-folded structures but also enables the on-demand control of topological states, with promising applications in wave manipulation and vibration isolation.
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利用三浦折叠超材料按需实现拓扑状态
拓扑超材料的最新进展揭示了丰硕的物理学成果和众多应用。最初的研究重点是通过结构对称性原理实现拓扑保护边缘态,而现在这一新兴领域则希望定制拓扑态,调整它们的出现和频率。在这里,我们的研究介绍了利用米乌拉折叠超材料面上的顺应机制实现拓扑相变的方法。这种方法可以诱导两种相反的拓扑相位,从而在界面上产生拓扑态。此外,我们还利用三浦折叠超材料独特的折叠行为来调节拓扑态的频率,并动态切换它们的存在。我们的研究不仅为在三浦折叠结构中诱导拓扑相变铺平了道路,还实现了对拓扑状态的按需控制,有望在波操纵和振动隔离领域得到应用。
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