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Observation of scalable sub-Poissonian-field lasing in a microlaser

机译:浅析微升空中可扩展的亚泊松 - 场探测

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Sub-Poisson field with much reduced fluctuations in a cavity can boost quantum precision measurements via cavity-enhanced light-matter interactions. Strong coupling between an atom and a cavity mode has been utilized to generate highly sub-Poisson fields. However, a macroscopic number of optical intracavity photons with more than 3?dB variance reduction has not been possible. Here, we report sub-Poisson field lasing in a microlaser operating with hundreds of atoms with well-regulated atom-cavity coupling and interaction time. Its photon-number variance was 4?dB below the standard quantum limit while the intracavity mean photon number scalable up to 600. The highly sub-Poisson photon statistics were not deteriorated by simultaneous interaction of a large number of atoms. Our finding suggests an effective pathway to widely scalable near-Fock-state lasing at the macroscopic scale.
机译:具有大大降低的腔体在腔中波动的亚泊松场可以通过腔增强的浅点相互作用提高量子精密测量。原子与腔模式之间的强耦合已经利用来产生高度泊泊田。然而,宏观数量的光学腔内光子具有超过3μd≤db的变差减少。在这里,我们在用数百个原子的微升降机中报告亚泊松场,其具有良好调节的原子腔耦合和相互作用时间。其光子数方差低于标准量子极限,而腔内平均值可扩展至600。通过同时对大量原子的同时相互作用,高度级泊松光子统计量不会劣化。我们的发现表明,在宏观尺度上广泛可扩展的近套管近方的有效途径。

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