Kaneda Fumihiro, Suzuki Hirofumi, Shimizu Ryosuke, Edamatsu Keiichi
Opt Express. 2019 Jan 21;27(2):1416-1424. doi: 10.1364/OE.27.001416.
We report a simple scheme for direct generation of frequency-bin entangled photon pairs via spontaneous parametric downconversion. Our fabricated nonlinear optical crystal with two different poling periods can simultaneously satisfy two different, spectrally symmetric nondegenerate quasi-phase-matching conditions, enabling the direct generation of entanglement in two discrete frequency-bin modes. Our produced photon pairs exhibited Hong-Ou-Mandel interference with high-visibility beating oscillations- a signature of two-mode frequency-bin entanglement. Moreover, we demonstrate deterministic entanglement-mode conversion from frequency-bin to polarization modes, with which our source can be more versatile for various quantum applications. Our scheme can be extended to direct generation of high-dimensional frequency-bin entanglement, and thus will be a key technology for frequency-multiplexed optical quantum information processing.
我们报道了一种通过自发参量下转换直接产生频分纠缠光子对的简单方案。我们制造的具有两个不同极化周期的非线性光学晶体可以同时满足两个不同的、光谱对称的非简并准相位匹配条件,从而能够直接在两个离散频分模式中产生纠缠。我们产生的光子对表现出具有高可见度拍频振荡的Hong-Ou-Mandel干涉——这是双模频分纠缠的一个特征。此外,我们展示了从频分到偏振模式的确定性纠缠模式转换,通过这种转换,我们的光源在各种量子应用中可以更加通用。我们的方案可以扩展到直接产生高维频分纠缠,因此将成为频分复用光学量子信息处理的一项关键技术。