论文标题
从下波长非线性膜的自发参数下转换
Spontaneous Parametric Down-Conversion from Subwavelength Nonlinear Films
论文作者
论文摘要
高度要求综合量子光子学的微型纠缠光子源。由于次波长光学跨面的发明及其在替代庞大的光学组件方面取得的成功,因此积极研究了在此类设备上实施纠缠的光子源的可能性。在这里,作为迈向量子光学跨面(QOM)开发的第一步,我们通过亚波长膜通过自发参数下转换(SPDC)演示了光子对生成。我们实现了光子对产生的生成,并在氯酸锂和磷酸锂纳米膜中具有高重合性与偶然比率。此外,我们通过纤维光谱测量了SPDC频谱,获得了光子带宽为500 \; nm的光子对,仅受整体检测效率的限制。此外,由于非线性膜内部的Fabry-Perot共振,我们已经观察到了真空场的增强。我们的实验为包括QOM在内的Flat SPDC来源的未来开发奠定了基础。
Miniaturised entangled photon sources are highly demanded for the development of integrated quantum photonics. Since the invention of subwavelength optical metasurfaces and their successes at replacing bulky optical components, the possibility of implementing entangled photon sources on such devices is actively investigated. Here, as a first step towards the development of quantum optical metasurfaces (QOM), we demonstrate photon pair generation via spontaneous parametric down-conversion (SPDC) from subwavelength films. We achieved photon pair generation with a high coincidence-to-accidental ratio in lithium niobate and gallium phosphide nanofilms. In addition, we have measured the SPDC frequency spectrum via fibre spectroscopy, obtaining photon pairs with a spectral bandwidth of 500\;nm, limited only by the overall detection efficiency. Moreover, we have observed the vacuum field enhancement due to a Fabry-Perot resonance inside the nonlinear films. Our experiments lay the groundwork for the future development of flat SPDC sources, including QOM.