论文标题
在电信波长处认证位置摩托车纠缠
Certifying position-momentum entanglement at telecommunication wavelengths
论文作者
论文摘要
他们成功地使用高维量子相关性及其在电信基础设施中的整合对于提高稳健性和关键发电率的尖端量子技术至关重要。光子对的位置Einstein-Podolsky-Rosen(EPR)纠缠是这种高维量子相关性的有希望的资源。在这里,我们通过第一次在非线性晶体中通过自发参数下转换(SPDC)产生的光子对的EPR相关性,首次在电信波长下在电信波长下进行的。为了实验观察EPR纠缠,我们在信号和怠速模式的近场和远场平面上进行扫描测量。我们证明具有高达45个标准偏差的高统计意义的EPR相关性。此外,我们确定源形成的纠缠大于1,表明尺寸大于2。在1550 nm左右的电信波长下运行,我们的源与当今部署的电信基础架构兼容,因此铺平了将高度构成量化量化量化量化源源构成量化量的源泉的方式。
TheThe successful employment of high-dimensional quantum correlations and its integration in telecommunication infrastructures is vital in cutting-edge quantum technologies for increasing robustness and key generation rate. Position-momentum Einstein-Podolsky-Rosen (EPR) entanglement of photon pairs are a promising resource of such high-dimensional quantum correlations. Here, we experimentally certify EPR correlations of photon pairs generated by spontaneous parametric down-conversion (SPDC) in a nonlinear crystal with type-0 phase-matching at telecommunication wavelength for the first time. To experimentally observe EPR entanglement, we perform scanning measurements in the near- and far-field planes of the signal and idler modes. We certify EPR correlations with high statistical significance of up to 45 standard deviations. Furthermore, we determine the entanglement of formation of our source to be greater than one, indicating a dimensionality of greater than 2. Operating at telecommunication wavelengths around 1550 nm, our source is compatible with today's deployed telecommunication infrastructure, thus paving the way for integrating sources of high-dimensional entanglement into quantum-communication infrastructures.