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Fractal photonic anomalous Floquet topologicalinsulators to generate multiple quantum chiraledge states 被引量:1

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摘要 Anomalous Floquet topological insulators with vanishing Chern numbers but supporting chiral edge modes are attracting more and more attention.Since the existing anomalous Floquet topological insulators usually support only one kind of chiral edge mode even at a large lattice size,they are unscalable and unapplicable for multistate topological quantum systems.Recently,fractal topological insulators with self-similarity have been explored to support more nontrivial modes.Here,we demonstrate the first experimental realization of fractal photonic anomalous Floquet topological insulators based on dual Sierpinski carpet consisting of directional couplers using the femtosecond laser direct writing.The fabricated lattices support much more kinds of chiral edge states with fewer waveguides and enable perfect hopping of quantum states with near unit transfer efficiency.Instead of zero-dimensional bound modes for quantum state transport in previous laser direct-written topological insulators,we generate multiple propagating single-photon chiral edge states in the fractal lattice and observe high-visibility quantum interferences.These suggest the successful realization of highly indistinguishable single-photon chiral edge states,which can be applied in various quantum operations.This work provides the potential for enhancing the multi-fold manipulation of quantum states,enlarging the encodable quantum information capacity in a single lattice via high-dimensional encoding and many other fractal applications.
出处 《Light(Science & Applications)》 SCIE EI CSCD 2023年第11期2498-2507,共10页 光(科学与应用)(英文版)
基金 National Natural Science Foundation of China(12134001,11527901,61590933) National Key Research and Development Program of China(2018YFB1107205,2016YFA0301302) Joint Fund for Equipment Pre-research Space Science and Technology(6141B06140601) the Innovation Program for Quantum Science and Technology(No.2021ZD0301500).M.L.and Y.L.thank Tianxiang Dai for helpful discussion on the theory.
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