Sultanov Vitaliy, Santiago-Cruz Tomás, Chekhova Maria V
Opt Lett. 2022 Aug 1;47(15):3872-3875. doi: 10.1364/OL.458133.
The concept of "flat optics" is quickly conquering different fields of photonics, but its implementation in quantum optics is still in its infancy. In particular, polarization entanglement, strongly required in quantum photonics, is so far not realized on "flat" platforms. Meanwhile, relaxed phase matching of "flat" nonlinear optical sources enables enormous freedom in tailoring their polarization properties. Here we use this freedom to generate photon pairs with tunable polarization entanglement via spontaneous parametric downconversion (SPDC) in a 400-nm GaP film. By changing the pump polarization, we tune the polarization state of photon pairs from maximally entangled to almost disentangled, which is impossible in a single bulk SPDC source. Polarization entanglement, together with the broadband frequency spectrum, results in an ultranarrow (12 fs) Hong-Ou-Mandel effect and promises extensions to hyperentanglement.
“平面光学”概念正在迅速占领光子学的不同领域,但其在量子光学中的应用仍处于起步阶段。特别是,量子光子学中强烈需要的偏振纠缠,目前在“平面”平台上尚未实现。与此同时,“平面”非线性光源的宽松相位匹配使得在定制其偏振特性方面具有极大的自由度。在这里,我们利用这种自由度,通过在400纳米的GaP薄膜中进行自发参量下转换(SPDC)来产生具有可调偏振纠缠的光子对。通过改变泵浦偏振,我们将光子对的偏振态从最大纠缠态调谐到几乎非纠缠态,这在单个块状SPDC源中是不可能实现的。偏振纠缠与宽带频谱一起,导致了超窄(12飞秒)的Hong-Ou-Mandel效应,并有望扩展到超纠缠。