论文标题
轨道角动量量子状态的长寿命存储
Long-lived storage of orbital angular momentum quantum states
论文作者
论文摘要
量子记忆对于建立长距离量子网络是必不可少的。与在二维空间中工作的量子存储器相比,高维量子记忆可实现较高的通道容量,并且在量子共荷领域的存储寿命要求较低。光子横向空间模式,例如拉瓜埃拉 - 高斯轨道角动量(OAM)是编码高维信息的理想候选者,因为它可以形成无限维的希尔伯特空间。尽管在开创性的作品中已经实现了OAM量子或Qutrit的忠实存储,但前者最长的存储寿命仅按几微秒的顺序,而后者的数百纳米秒。在这里,我们使用冷原子集合实现量子量和Qutrits的量子内存,实验结果清楚地表明,在存储时间为400μs$ $的存储时间后,我们的内存仍然可以超过经典的限制,这比以前的工作高两个数量级。当存储时间设置为$10μs$时,目前的检索效率等于$ 44 \%$。我们的工作非常有前途,可以建立高维量子网络。
Quantum memories are indispensible for establishing a long-distance quantum network. High-dimensional quantum memories enable a higher channel capacity compared to a quantum memory working in a two-dimensional space, and have a lower requirement for storage lifetime in the field of quantum coomunication. The photonic transverse spatial modes such as Laguerra-Gaussian modes orbital angular momentum (OAM) are ideal candidates for encoding high-dimensional information, because it can form an infinite-dimensional Hilbert space. Although the faithful storage of an OAM qubit or qutrit has been realized in pioneering works, the longest storage lifetime for the former is only in the order of a few microseconds, and hundreds of nano-seconds for the latter. Here we implement a quantum memory for OAM qubits and qutrits using a cold atomic ensemble, the experimental results clearly show that our memory can still beat the classical limit after a storage time of $400μs$,which is two orders of magnitude higher than the previous work. The retrieval efficiency at this time equals to $44\%$ of the value when the storage time is set to be $10μs$. Our work is very promising for establishing a high dimensional quantum network.