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Free Space Ramsey Spectroscopy in Rubidium with Noise below the Quantum Projection Limit

机译:铷中的自由空间Ramsey光谱,噪声低于量子投影极限

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摘要

We demonstrate the utility of optical cavity generated spin-squeezed states in free space atomic fountain clocks in ensembles of 390 000 Rb-87 atoms. Fluorescence imaging, correlated to an initial quantum nondemolition measurement, is used for population spectroscopy after the atoms are released from a confining lattice. For a free fall time of 4 milliseconds, we resolve a single-shot phase sensitivity of 814(61) microradians, which is 5.8(0.6) decibels (dB) below the quantum projection limit. We observe that this squeezing is preserved as the cloud expands to a roughly 200 mu m radius and falls roughly 300 mu m in free space. Ramsey spectroscopy with 240 000 atoms at a 3.6 ms Ramsey time results in a single-shot fractional frequency stability of 8.4(0.2) x 10(-12), 3.8(0.2) dB below the quantum projection limit. The sensitivity and stability are limited by the technical noise in the fluorescence detection protocol and the microwave system, respectively.
机译:我们展示了光学腔生成的旋转状态在自由空间原子喷泉时钟中的效用,在390 000 rb-87原子的集合中。与初始量子非透射测量相关的荧光成像,在原子从限制晶格中释放之后用于群体光谱。对于4毫秒的自由下降时间,我们解析了814(61)微火的单次相比敏感性,下降5.8(0.6)分贝(DB)低于量子投影极限。我们观察到,随着云扩展到大约200μm半径,在自由空间中大约300μm下降,挤压这种挤压。 Ramsey光谱与3.6ms Ramsey时间的240 000原子的谱取决于量子投影极限下方8.4(0.2)×10(-12),3.8(0.2)DB的单次分数频率稳定性。灵敏度和稳定性分别受荧光检测协议和微波系统中的技术噪声的限制。

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  • 来源
    《Physical review letters》 |2020年第4期|043202.1-043202.5|共5页
  • 作者单位

    Stanford Univ Dept Phys Stanford CA 94305 USA;

    Stanford Univ Dept Phys Stanford CA 94305 USA;

    Stanford Univ Dept Appl Phys Stanford CA 94305 USA;

    IST Austria A-3400 Klosterneuhurg Austria;

    Stanford Univ Dept Phys Stanford CA 94305 USA|Stanford Univ Dept Appl Phys Stanford CA 94305 USA;

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  • 正文语种 eng
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