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Nonlinear Quantum Optics at a Topological Interface Enabled by Defect Engineering

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arxiv 2408.08750 v2 pith:SDAZZDN4 submitted 2024-08-16 physics.optics quant-ph

Nonlinear Quantum Optics at a Topological Interface Enabled by Defect Engineering

classification physics.optics quant-ph
keywords quantumtopologicalinterfacenonlineardefectsdesignintegrationphotonic
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The integration of topology into photonics has generated a new design framework for constructing robust and unidirectional waveguides, which are not feasible with traditional photonic devices. Here, we overcome current barriers to the successful integration of quantum emitters such as quantum dots (QDs) into valley-Hall (VH) topological waveguides, utilising photonic defects at the topological interface to stabilise the local charge environment and inverse design for efficient topological-conventional mode conversion. By incorporating QDs within defects of VH-photonic crystals, we demonstrate the first instances of single-photon resonant fluorescence and resonant transmission spectroscopy of a quantum emitter at a topological waveguide interface. Our results bring together topological photonics with optical nonlinear effects at the single-photon level, offering a new avenue to investigate the interaction between topology and quantum nonlinear systems.

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