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Programmable Integrated Photonics for Topological Hamiltonians

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arxiv 2307.05003 v1 pith:5VRZI6MA submitted 2023-07-11 physics.optics

Programmable Integrated Photonics for Topological Hamiltonians

classification physics.optics
keywords topologicalhamiltonianphotonicsplatformapplicationsdemonstratehamiltoniansintegrated
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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A variety of topological Hamiltonians have been demonstrated in photonic platforms, leading to fundamental discoveries and enhanced robustness in applications such as lasing, sensing, and quantum technologies. To date, each topological photonic platform implements a specific type of Hamiltonian with inexistent or limited reconfigurability. Here, we propose and demonstrate different topological models by using the same reprogrammable integrated photonics platform, consisting of a hexagonal mesh of silicon Mach-Zehnder interferometers with phase-shifters. We specifically demonstrate a one-dimensional Su-Schrieffer-Heeger Hamiltonian supporting a localized topological edge mode and a higher-order topological insulator based on a two-dimensional breathing Kagome Hamiltonian with three corner states. These results highlight a nearly universal platform for topological models that may fast-track research progress toward applications of topological photonics and other coupled systems.

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