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February 5, 20260 citations

High-dimensional entanglement and topological protection in nonlinear waveguide arrays

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AZAlessandro ZecchettoARArnault RaymondJCJean‐René Coudevylle

Key Points

  • The aim is to explore high-dimensional entanglement and topological effects in nonlinear photonic systems.
  • Generated biphotons using parametric down conversion in an AlGaAs waveguide array.
  • Investigated high-dimensional spatial correlations through quantum walks within the waveguide setup.
  • Implemented the Su-Schriefer-Heeger model to assess topological protection against disorder.
  • Successfully generated various types of high-dimensional entangled states of light.
  • Demonstrated topological protection of the SPDC process under disorder conditions.
  • Presented the nonlinear waveguide array as a viable platform for studying complex quantum interactions.

Abstract

We demonstrate a nonlinear AlGaAs photonic chip generating biphotons with high-dimensional spatial correlations. Photon pairs are generated by parametric down conversion in a waveguide array and simultaneously spread through quantum walks along the various waveguides, allowing to generate various types of high-dimensional entangled states of light. We further implement the Su-Schriefer-Heeger model and demonstrate the topological protection of the SPDC process against disorder. These results highlight nonlinear waveguide arrays as a promising platform for exploring the interplay between nonlinearity, disorder and topology in quantum photonic circuits.

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Cite This Study

Zecchetto et al. (2025) studied this question.

synapsesocial.com/papers/6984346ff1d9ada3c1fb2999https://doi.org/10.1051/epjconf/202533506005/pdf
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