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Cavity-Based Single Atom Preparation and High-Fidelity Hyperfine State Readout

机译:基于腔的单原子制备和高保真超细状态读出

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摘要

We prepare and detect the hyperfine state of a single ~(87)Rb atom coupled to a fiber-based high-finesse cavity on an atom chip. The atom is extracted from a Bose-Einstein condensate and trapped at the maximum of the cavity field, resulting in a reproducibly strong atom-cavity coupling. We use the cavity reflection and transmission signal to infer the atomic hyperfine state with a fidelity exceeding 99.92% in a readout time of 100 μs. The atom is still trapped after detection.
机译:我们准备和检测单个〜(87)Rb原子与原子芯片上基于纤维的高精细腔耦合的超精细状态。原子是从玻色-爱因斯坦凝聚物中提取的,并被捕获在最大的腔场中,从而导致可重现的原子-腔耦合。我们使用腔反射和透射信号在100μs的读取时间内推断保真度超过99.92%的原子超精细状态。原子在检测后仍被捕获。

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