物理
量子成像
干涉测量
量子极限
量子技术
量子纠错
量子传感器
量子噪声
量子信息
量子
噪音(视频)
量子网络
光子学
光子
量子信息科学
光电子学
光学
计算机科学
量子力学
开放量子系统
量子纠缠
图像(数学)
人工智能
作者
Zhifei Yu,Zeliang Wu,Xuejie Li,Xiaotian Feng,Wenfeng Huang,Keye Zhang,Chun-Hua Yuan,Weiping Zhang,L. Q. Chen
标识
DOI:10.1103/physrevlett.131.150804
摘要
A quantum memory with the performances of low noise, high efficiency, and high bandwidth is of crucial importance for developing practical quantum information technologies. However, the excess noises generated during the highly efficient processing of quantum information inevitably destroy quantum state. Here, we present a quantum memory with built-in excess-noise eraser by integrating a photon-correlated quantum interferometry in quantum memory, where the memory efficiency can be enhanced and the excess noises can be suppressed to the vacuum level via destructive interference. This quantum memory is demonstrated in a rubidium vapor cell with a 10-ns-long photonics signal. We observe ∼80% noise suppression, the write-in efficiency enhancement from 87% to 96.2% without and with interferometry, and the corresponding memory efficiency excluding the noises from 70% to 77%. The fidelity is 93.7% at the single-photon level, significantly exceeding the no-cloning limit. Such interferometry-integrated quantum memory, the first expansion of quantum interference techniques to quantum information processing, simultaneously enables low noise, high bandwidth, high efficiency, and easy operation.
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