Rui Jun, Jiang Yan, Yang Sheng-Jun, Zhao Bo, Bao Xiao-Hui, Pan Jian-Wei
Hefei National Laboratory for Physical Sciences at Microscale and Department of Modern Physics, University of Science and Technology of China, Hefei, Anhui 230026, People's Republic of China.
CAS Center for Excellence and Synergetic Innovation Center in Quantum Information and Quantum Physics, University of Science and Technology of China, Hefei, Anhui 230026, People's Republic of China.
Phys Rev Lett. 2015 Sep 25;115(13):133002. doi: 10.1103/PhysRevLett.115.133002. Epub 2015 Sep 24.
Spin echo is a powerful technique to extend atomic or nuclear coherence times by overcoming the dephasing due to inhomogeneous broadenings. However, there are disputes about the feasibility of applying this technique to an ensemble-based quantum memory at the single-quanta level. In this experimental study, we find that noise due to imperfections of the rephasing pulses has both intense superradiant and weak isotropic parts. By properly arranging the beam directions and optimizing the pulse fidelities, we successfully manage to operate the spin echo technique in the quantum regime by observing nonclassical photon-photon correlations as well as the quantum behavior of retrieved photons. Our work for the first time demonstrates the feasibility of harnessing the spin echo method to extend the lifetime of ensemble-based quantum memories at the single-quanta level.
自旋回波是一种强大的技术,可通过克服因非均匀展宽导致的退相来延长原子或核的相干时间。然而,在单量子水平上将该技术应用于基于系综的量子存储器的可行性存在争议。在这项实验研究中,我们发现由于重相脉冲的不完善而产生的噪声具有强烈的超辐射部分和微弱的各向同性部分。通过适当地安排光束方向并优化脉冲保真度,我们通过观察非经典的光子 - 光子相关性以及检索光子的量子行为,成功地在量子 regime 中操作了自旋回波技术。我们的工作首次证明了利用自旋回波方法在单量子水平上延长基于系综的量子存储器寿命的可行性。 (注:原文中“quantum regime”未明确给出准确中文释义,暂保留英文)