物理
自旋(空气动力学)
量子力学
原子物理学
热力学
作者
Shenchao Jin,Junlei Duan,Youwei Zhang,Xichang Zhang,Han Bao,Heng Shen,Liantuan Xiao,Suotang Jia,Mingfeng Wang,Yanhong Xiao
标识
DOI:10.1103/physrevlett.133.173604
摘要
Squeezed spin states and squeezed light are both key resources for quantum metrology and quantum information science, but have been separately investigated in experiments so far. Simultaneous generation of these two types of quantum states in one experiment setup is intriguing but remains a challenging goal. Here, we propose a novel protocol based on judiciously engineered symmetric atom-light interaction, and report proof-of-principle experimental results of concurrent spin squeezing of 0.61±0.09 dB and light squeezing of 0.65_{-0.10}^{+0.11} dB in a hot atomic ensemble. The squeezing process is deterministic, yielding fixed squeezing directions for both the light field and the collective atomic spin. Furthermore, the squeezed light modes lie in the multiple frequency sidebands of a single spatial mode. This new type of dual squeezed state is applicable for quantum enhanced metrology and quantum networks. Our method can be extended to other quantum platforms such as optomechanics, cold atoms, and trapped ions.
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