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Room-temperature on-chip orbital angular momentum single-photon sources

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arxiv 2104.01118 v1 pith:OVAZF45F submitted 2021-04-02 physics.optics cond-mat.mes-hallphysics.app-phquant-ph

classification physics.opticscond-mat.mes-hallphysics.app-phquant-ph
keywords sourcesangularmomentumon-chiporbitalquantumsingle-photoncarrying
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On-chip photon sources carrying orbital angular momentum (OAM) are in demand for high-capacity optical information processing in both classical and quantum regimes. However, currently-exploited integrated OAM sources have been primarily limited to the classical regime. Herein, we demonstrate a room-temperature on-chip integrated OAM source that emits well-collimated single photons, with a single-photon purity of g(2)(0) = 0.22, carrying entangled spin and orbital angular momentum states and forming two spatially separated entangled radiation channels with different polarization properties. The OAM-encoded single photons are generated by efficiently outcoupling diverging surface plasmon polaritons excited with a deterministically positioned quantum emitter via Archimedean spiral gratings. Our OAM single-photon sources bridge the gap between conventional OAM manipulation and nonclassical light sources, enabling high-dimensional and large-scale photonic quantum systems for information processing.

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