弗洛奎特理论
布洛赫振荡
物理
布里渊区
布洛赫波
格子(音乐)
光学晶格
一维晶格中的粒子
光子学
凝聚态物理
非线性系统
互易晶格
量子力学
衍射
电子
过剩
声学
作者
Corentin Lechevalier,C. Évain,Pierre Suret,François Copie,A. Amo,Stéphane Randoux
标识
DOI:10.1038/s42005-021-00750-w
摘要
Abstract Floquet-Bloch lattices are systems in which wave packets are subjet to periodic modulations both in time and space, showing rich dynamics. While this type of lattice is difficult to implement in solid-state physics, optical systems have provided excellent platforms to probe their physics: among other effects, they have revealed genuine phenomena such as the anomalous Floquet topological insulator and the funnelling of light into localised interface modes. Despite the crucial importance of the band dispersion in the photon dynamics and the topological properties of the lattice, the direct experimental measurement of the Floquet-Bloch bands has remained elusive. Here we report the direct measurement of the Floquet-Bloch bands of a photonic lattice with a single shot method. We use a system of two coupled fibre rings that implements a time-multiplexed Floquet-Bloch lattice. By Fourier transforming the impulse response of the lattice we obtain the band structure together with an accurate characterization of the lattice eigenmodes, i. e. the amplitudes and the phases of the Floquet-Bloch eigenvectors over the entire Brillouin zone. Our results open promising perspectives for the observation of topological effects in the linear and nonlinear regime in Floquet systems.
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