Lipka Michał, Parniak Michał
Opt Lett. 2021 Jul 1;46(13):3009-3012. doi: 10.1364/OL.417658.
Hyperentangled photonic states-exhibiting nonclassical correlations in several degrees of freedom-offer improved performance of quantum optical communication and computation schemes. Experimentally, a hyperentanglement of transverse-wave-vector and spectral modes can be obtained in a straightforward way with multimode parametric single-photon sources. Nevertheless, experimental characterization of such states remains challenging. Not only single-photon detection with high spatial resolution-a single-photon camera-is required, but also a suitable mode converter to observe the spectral-temporal degree of freedom. We experimentally demonstrate a measurement of full four-dimensional transverse-wave-vector-spectral correlations between pairs of photons produced in noncollinear spontaneous parametric downconversion. Utilization of a custom ultrafast single-photon camera provides high resolution and a short measurement time.
超纠缠光子态在多个自由度上表现出非经典关联,可提升量子光通信和计算方案的性能。在实验中,利用多模参量单光子源能够直接获得横向波矢和光谱模式的超纠缠。然而,对这类状态进行实验表征仍具有挑战性。不仅需要使用具有高空间分辨率的单光子探测器——单光子相机,还需要一个合适的模式转换器来观测光谱-时间自由度。我们通过实验展示了对非共线自发参量下转换产生的光子对之间完整的四维横向波矢-光谱关联的测量。使用定制的超快单光子相机可实现高分辨率和短测量时间。