Santiago-Cruz Tomás, Sultanov Vitaliy, Zhang Haizhong, Krivitsky Leonid A, Chekhova Maria V
Opt Lett. 2021 Feb 1;46(3):653-656. doi: 10.1364/OL.411176.
Miniaturized entangled photon sources, in particular based on subwavelength metasurfaces, are highly demanded for the development of integrated quantum photonics. Here, as a first step towards the development of quantum optical metasurfaces (QOMs), we demonstrate generation of entangled photons via spontaneous parametric down-conversion (SPDC) from subwavelength films. We achieve photon pair generation with a high coincidence-to-accidental ratio in lithium niobate and gallium phosphide nanofilms. By implementing the fiber spectroscopy of SPDC in nanofilms, we measure a spectrum with a bandwidth of 500 nm, limited only by the overall detection efficiency. The spectrum reveals vacuum field enhancement due to a Fabry-Perot resonance inside the nonlinear films. It also suggests a strategy for observing SPDC from QOM. Our experiments lay the groundwork for future development of flat SPDC sources, including QOM.
集成量子光子学的发展迫切需要小型化的纠缠光子源,特别是基于亚波长超表面的光子源。在此,作为朝着量子光学超表面(QOM)发展的第一步,我们展示了通过亚波长薄膜的自发参量下转换(SPDC)产生纠缠光子。我们在铌酸锂和磷化镓纳米薄膜中实现了具有高符合与本底比的光子对产生。通过对纳米薄膜中的SPDC进行光纤光谱测量,我们测量到了带宽为500 nm的光谱,该带宽仅受整体探测效率的限制。该光谱揭示了由于非线性薄膜内部的法布里 - 珀罗共振导致的真空场增强。它还提出了一种从QOM观测SPDC的策略。我们的实验为包括QOM在内的平面SPDC源的未来发展奠定了基础。