Metasurface interferometry toward quantum sensors
Интерферометрия на основе метаповерхностей для квантовых сенсоров
2019-08-13
SCID: 54.1/nt6p9av3
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metasurface interferometrypath entanglementquantum HOM interferencequantum sensorstwo-photon NOON state
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Abstract (AI)
Optical metasurfaces open new avenues for the precise wavefront control of light for integrated quantum technology. Here, we demonstrate a hybrid integrated quantum photonic system that is capable of entangling and disentangling two-photon spin states at a dielectric metasurface. Via the interference of single-photon pairs at a nanostructured dielectric metasurface, a path-entangled two-photon NOON state with circular polarization that exhibits a quantum HOM interference visibility of 86 ± 4% is generated. Furthermore, we demonstrate nonclassicality andphase sensitivity in a metasurface-based interferometer with a fringe visibility of 86.8 ± 1.1% in the coincidence counts. This high visibility proves the metasurface-induced path entanglement inside the interferometer. Our findings provide a promising way to develop hybrid-integrated quantum technology operating in the high-dimensional mode space in various applications, such as imaging, sensing, and computing.
Key Findings
1
A hybrid integrated quantum photonic system entangles and disentangles two-photon spin states using a dielectric metasurface.
2
A metasurface-based interferometer demonstrates nonclassicality and phase sensitivity with 86.8 ± 1.1% coincidence-count fringe visibility.
3
Interference of single-photon pairs at a nanostructured dielectric metasurface generates a circularly polarized, path-entangled two-photon NOON state.
4
The generated NOON state exhibits quantum Hong–Ou–Mandel interference visibility of 86 ± 4%.
5
The high fringe visibility confirms metasurface-induced path entanglement and supports applications in integrated quantum imaging, sensing, and computing.
Research Object
hybrid integrated quantum photonic system based on a nanostructured dielectric metasurface
Research Subject
metasurface-induced two-photon path entanglement, nonclassicality, and phase-sensitive quantum interference
Publication Details
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2019-08-13
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