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Radio-Frequency Spectroscopy of UltracoId Fermions

机译:UltracoId费米子的射频光谱

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Radio-frequency techniques were used to study ultracold fermions. We observed the absence of mean-field "clock" shifts, the dominant source of systematic error in current atomic clocks based on bosonic atoms. This absence is a direct consequence of fermionic antisymmetry. Resonance shifts proportional to interaction strengths were observed in a three-level system. However, in the strongly interacting regime, these shifts became very small, reflecting the quantum unitarity limit and many-body effects. This insight into an interacting Fermi gas is relevant for the quest to observe superfluidity in this system.
机译:射频技术被用于研究超冷费米子。我们观察到没有均值场“时钟”偏移,后者是当前基于波斯尼亚原子的原子钟中系统误差的主要来源。这种缺乏是铁离子反对称性的直接结果。在三级系统中观察到与相互作用强度成正比的共振位移。但是,在强相互作用的状态下,这些位移变得很小,反映了量子统一性极限和多体效应。对相互作用的费米气体的这种洞察力与观察该系统中的超流动性有关。

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