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Coupling light to a nuclear spin gas with a two-photon linewidth of five millihertz

机译:将光与核旋转气体耦合,具有五毫升的双光子线宽

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摘要

Nuclear spins of noble gases feature extremely long coherence times but are inaccessible to optical photons. Here, we realize a coherent interface between light and noble-gas spins that is mediated by alkali atoms. We demonstrate the optical excitation of the noble-gas spins and observe the coherent back action on the light in the form of high-contrast two-photon spectra. We report on a record two-photon linewidth of 5 ± 0.7 mHz above room temperature, corresponding to a 1-min coherence time. This experiment provides a demonstration of coherent bidirectional coupling between light and noble-gas spins, rendering their long-lived spin coherence accessible for manipulations in the optical domain.
机译:惰性气体的核旋转具有极长的相干时间,但光学光子无法访问。 在这里,我们实现了由碱原子介导的光和贵气旋之间的相干界面。 我们证明了贵族气体旋转的光学激发,并以高对比度双光子谱的形式观察光的相干背部动作。 我们报告了在室温上5±0.7MHz的记录两光子线宽,对应于1分钟的相干时间。 该实验提供了光和贵瓦气旋转之间的相干双向耦合的演示,使其在光学域中的操纵中可获得它们的长寿命的自旋相干性。

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