Yang Ye, Xiang Xiao, Hou Feiyan, Quan Runai, Li Baihong, Li Wei, Zhu Ninghua, Liu Tao, Zhang Shougang, Dong Ruifang, Li Ming
Opt Express. 2020 Mar 2;28(5):7488-7497. doi: 10.1364/OE.387146.
Nonlocal wavelength-to-time mapping between frequency-entangled photon pairs generated with the process of spontaneous parametric down-conversion is theoretically analyzed and experimentally demonstrated. The spectral filtering pattern experienced by one photon in the photon pair will be non-locally mapped into the time domain when the other photon propagates inside a dispersion-compensation fiber with large group velocity dispersion. Our work, for the first time, points out that the spectral bandwidth of the pump laser will become the dominated factor preventing the improvement of the spectral resolution when the involved group velocity dispersion is large enough, which provides an excellent tool for characterizing the resolution of a nonlocal wavelength-to-time mapping for further quantum information applications.
对通过自发参量下转换过程产生的频率纠缠光子对之间的非局域波长到时间映射进行了理论分析和实验验证。当另一个光子在具有大群速度色散的色散补偿光纤中传播时,光子对中一个光子所经历的光谱滤波模式将被非局域映射到时间域。我们的工作首次指出,当所涉及的群速度色散足够大时,泵浦激光的光谱带宽将成为阻碍光谱分辨率提高的主导因素,这为进一步的量子信息应用中表征非局域波长到时间映射的分辨率提供了一个出色的工具。