4.8 Article

Multichannel Distribution and Transformation of Entangled Photons with Dielectric Metasurfaces

Journal

PHYSICAL REVIEW LETTERS
Volume 129, Issue 2, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.129.023601

Keywords

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Funding

  1. National Key R&D Program of China [2017YF A0303702, 2020YFA0211300]
  2. National Natural Science Foundation of China [11634005, 11974177, 61975078]

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This article introduces a method for the transformation and distribution of photon pairs using dielectric metasurfaces, which efficiently achieves the distribution and transformation of entangled photon states. The experimental results demonstrate the potential for integrating quantum information networks.
Photonic quantum information processing relies on operating the quantum state of photons, which usually involves bulky optical components unfavorable for system miniaturization and integration. Here, we report on the transformation and distribution of polarization-entangled photon pairs with multichannel dielectric metasurfaces. The entangled photon pairs interact with metasurface building blocks, where the geometrical-scaling-induced phase gradients are imposed, and are transformed into two-photon entangled states with the desired polarization. Two metasurfaces, each simultaneously distributing polarizationentangled photons to spatially separated multiple channels M (N), may accomplish M ?? N channels of entanglement distribution and transformation. Experimentally we demonstrate 2 ?? 2 and 4 ?? 4 distributed entanglement states, including Bell states and superposition of Bell states, with high fidelity and strong polarization correlation. We expect this approach paves the way for future integration of quantum information networks.

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