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April 19, 2026Science Advances2 citationsOpen Access

Direct generation of massive vector-mode entanglement from a polarization-insensitive optical amplifier

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XWXutong WangYWYao WeiKZKai Zhang

Key Points

  • To investigate the generation of entangled vector vortex modes using a novel polarization-insensitive optical amplifier.
  • Developed a polarization-insensitive amplifier utilizing the four-wave mixing process.
  • Seeded the amplifier with vacuum fields to generate squeezed vacuum states.
  • Produced pairs of two-mode squeezed vacuum states containing vector vortex modes.
  • Successfully generated 16 sets of two-mode squeezed vacuum states.
  • Each set consisted of continuous-variable entangled states with two vector vortex modes.
  • Demonstrated the potential for future applications in quantum optical technologies.

Abstract

Vectorially structured modes, with spatially inhomogeneous polarization, have attracted widespread attention due to their diverse applications across various physical processes. Entangling these modes holds great potential for advancing quantum optical technologies. In this work, we present a polarization-insensitive amplifier based on the four-wave mixing process, capable of directly generating large numbers of entangled vector vortex (VV) modes. When seeded by vacuum fields, the amplifier simultaneously produces 16 sets of two-mode squeezed vacuum states or continuous-variable entangled states, each containing two VV modes. This work opens avenues for developing quantum information processing that fully harnesses the vectorial nature of optical fields.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69e473ff010ef96374d8fc8ahttps://doi.org/10.1126/sciadv.aec0001
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