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Coupling ultracold atoms to a superconducting coplanar waveguide resonator

机译:将超冷原子耦合到超导共面波导谐振器

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摘要

Ensembles of trapped atoms interacting with on-chip microwave resonators are considered as promising systems for the realization of quantum memories, novel quantum gates, and interfaces between the microwave and optical regime. Here, we demonstrate coupling of magnetically trapped ultracold Rb ground-state atoms to a coherently driven superconducting coplanar resonator on an integrated atom chip. When the cavity is driven off-resonance from the atomic transition, the microwave field strength in the cavity can be measured through observation of the AC shift of the atomic hyperfine transition frequency. When driving the cavity in resonance with the atoms, we observe Rabi oscillations between hyperfine states, demonstrating coherent control of the atomic states through the cavity field. These observations enable the preparation of coherent atomic superposition states, which are required for the implementation of an atomic quantum memory.
机译:与芯片上的微波谐振器相互作用的被捕获原子的集合被认为是用于实现量子存储器,新型量子门以及微波与光学机制之间接口的有前途的系统。在这里,我们演示了磁捕获的超冷Rb基态原子与集成原子芯片上相干驱动的超导共面谐振器的耦合。当从原子跃迁驱使空腔失谐时,可以通过观察原子超精细跃迁频率的AC位移来测量空腔中的微波场强度。当驱动腔与原子共振时,我们观察到超精细状态之间的Rabi振荡,这说明了通过腔场对原子态的相干控制。这些观察使得能够准备相干原子叠加态,这对于实现原子量子存储器是必需的。

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