量子计量学
量子纠缠
量子退相干
量子传感器
物理
量子力学
有损压缩
噪音(视频)
量子技术
量子
量子噪声
量子光学
统计物理学
量子网络
计算机科学
开放量子系统
图像(数学)
人工智能
作者
Zheshen Zhang,Sara Mouradian,Franco N. C. Wong,Jeffrey H. Shapiro
标识
DOI:10.1103/physrevlett.114.110506
摘要
Nonclassical states are essential for optics-based quantum information processing, but their fragility limits their utility for practical scenarios in which loss and noise inevitably degrade, if not destroy, nonclassicality. Exploiting nonclassical states in quantum metrology yields sensitivity advantages over all classical schemes delivering the same energy per measurement interval to the sample being probed. These enhancements, almost without exception, are severely diminished by quantum decoherence. Here, we experimentally demonstrate an entanglement-enhanced sensing system that is resilient to quantum decoherence. We employ entanglement to realize a 20% signal-to-noise ratio improvement over the optimum classical scheme in an entanglement-breaking environment plagued by 14 dB of loss and a noise background 75 dB stronger than the returned probe light. Our result suggests that advantageous quantum-sensing technology could be developed for practical situations.
科研通智能强力驱动
Strongly Powered by AbleSci AI