Metasurface for complete measurement of polarization Bell state.

Nanophotonics

State Key Laboratory of Precision Spectroscopy, East China Normal University, Shanghai 200062, China.

Published: February 2023

AI Article Synopsis

  • Bell state measurement is critical in quantum information technology, but traditional methods struggle to distinguish all polarization Bell states without additional tools.
  • This research uses binary-pixel metasurfaces to directly measure all four polarization Bell states, achieving a 75% detection efficiency in a single measurement by manipulating output modes and polarizers.
  • The study highlights the benefits of metasurfaces for enhancing quantum detection processes, which can improve applications like quantum dense coding, entanglement swapping, and quantum teleportation.

Article Abstract

Bell state measurement is vital to quantum information technology. Conventional linear optical elements, however, cannot fully distinguish all polarization Bell states without assisting of additional degrees of freedom. Leveraging on a pair of binary-pixel metasurfaces, we demonstrate direct measurement of all four polarization Bell states. Each metasurface is designed to produce two output modes that linearly superpose three Bell states in the coincidence counting measurement. By rotating the polarizers, the coincidence counting measurement achieves a tunable anticorrelation between one and the other two Bell states, achieving Bell state detection efficiency of 75% in a single measurement. Complete and deterministic Bell state measurement is further realized by performing two measurements. Our work shows the advantage of utilization of metasurfaces in quantum detection schemes and is of great applicative interest for quantum dense coding, entanglement swapping, quantum teleportation protocols, and novel quantum information processing tasks.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11501330PMC
http://dx.doi.org/10.1515/nanoph-2022-0593DOI Listing

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