物理
超冷原子
量子
原子物理学
散射
实现(概率)
Atom(片上系统)
量子模拟器
高能中性原子
离子
量子计算机
量子力学
数学
计算机科学
统计
嵌入式系统
标识
DOI:10.1088/0034-4885/79/5/054401
摘要
The recent advances in single atom detection and manipulation in experiments with ultracold quantum gases are reviewed. The discussion starts with the basic principles of trapping, cooling and detecting single ions and atoms. The realization of single atom detection in ultracold quantum gases is presented in detail and the employed methods, which are based on light scattering, electron scattering, field ionization and direct neutral particle detection are discussed. The microscopic coherent manipulation of single atoms in a quantum gas is also covered. Various examples are given in order to highlight the power of these approaches to study many-body quantum systems.
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