纳秒
超冷原子
离子
时间分辨率
原子物理学
物理
图像分辨率
材料科学
分辨率(逻辑)
衍射
基态
流离失所(心理学)
显微镜
量子
分子物理学
光学
激光器
量子力学
心理治疗师
心理学
人工智能
计算机科学
作者
Zhong-Hua Qian,Jin‐Ming Cui,Xi-Wang Luo,Yong-Xiang Zheng,Yun‐Feng Huang,Ming-Zhong Ai,Ran He,Chuan‐Feng Li,Guang‐Can Guo
标识
DOI:10.1103/physrevlett.127.263603
摘要
In cold atomic systems, fast and high-resolution microscopy of individual atoms is crucial, since it can provide direct information on the dynamics and correlations of the system. Here, we demonstrate nanosecond-scale two-dimensional stroboscopic pictures of a single trapped ion beyond the optical diffraction limit, by combining the main idea of ground-state depletion microscopy with quantum-state transition control in cold atoms. We achieve a spatial resolution up to 175 nm using a NA=0.1 objective in the experiment, which represents a more than tenfold improvement compared with direct fluorescence imaging. To show the potential of this method, we apply it to observe the secular motion of the trapped ion; we demonstrate a temporal resolution up to 50 ns with a displacement detection sensitivity of 10 nm. Our method provides a powerful tool for probing particle positions, momenta, and correlations, as well as their dynamics in cold atomic systems.
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