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Far-field probing of leaky topological states in all-dielectric metasurfaces

机译:全介电超表面中泄漏拓扑状态的远场探测

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摘要

Topological phase transitions in condensed matter systems give rise to exotic states of matter such as topological insulators, superconductors, and superfluids. Photonic topological systems open a whole new realm of research and technological opportunities, exhibiting a number of important distinctions from their condensed matter counterparts. Photonic modes can leak into free space, which makes it possible to probe topological photonic phases by spectroscopic means via Fano resonances. Based on this idea, we develop a technique to retrieve the topological properties of all-dielectric metasurfaces from the measured far-field scattering characteristics. Collected angle-resolved spectra provide the momentum-dependent frequencies and lifetimes of the photonic modes that enable the retrieval of the effective Hamiltonian and extraction of the topological invariant. Our results demonstrate how the topological states of open non-Hermitian systems can be explored via far-field measurements, thus paving a way to the design of metasurfaces with unique scattering characteristics controlled via topological effects.
机译:凝聚态系统中的拓扑相变会引起物质的奇异状态,例如拓扑绝缘体,超导体和超流体。光子拓扑系统为研究和技术机会开辟了一个全新的领域,与凝聚态对应物相比具有许多重要的区别。光子模式可以泄漏到自由空间中,这使得可以通过光谱方法通过Fano共振探测拓扑光子相。基于此思想,我们开发了一种从测得的远场散射特性中检索全介电超表面的拓扑特性的技术。收集的角度分辨光谱提供了光子模式的依赖于动量的频率和寿命,从而能够检索有效的哈密顿量和提取拓扑不变量。我们的结果表明,如何通过远场测量来探索开放式非Hermitian系统的拓扑状态,从而为通过拓扑效应控制独特散射特性的超表面设计铺平了道路。

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