论文标题

高共聚焦腔QED显微镜

A high-cooperativity confocal cavity QED microscope

论文作者

Kroeze, Ronen M., Marsh, Brendan P., Lin, Kuan-Yu, Keeling, Jonathan, Lev, Benjamin L.

论文摘要

与统一的合作性相比,腔QED可以使高保真量子传感和信息处理。通常通过使用短的单模谐振器来达到高合理性制度。更复杂的多模谐振器,例如近焦焦点fabry-pérot腔,除了高协作性外,还可以提供腔内原子成像。最近,该功能对于在驱动触及式环境中探索量子多体物理学很重要。在这项工作中,我们表明,共聚焦腔QED显微镜可以实现超过110的合作性。这种合作性与最佳的单模腔(远远短)和比相似长度和镜面半径的单模复原体大21美元$ \ times $ \ times $ \ times $ 21 $ \ times $。 1.7- $ $ M成像分辨率自然与光子介导的相互作用范围相同。我们通过确定小小的,光学上的Tweez-bose-Einstein冷凝物在各种腔内位置泵送时,通过确定腔体超高的阈值来测量这些量。前场腔的传输测量证实了这些结果。我们提供了一个理论描述,该描述表明合作性增强是如何由分散耦合到许多近定模式的原子产生的。

Cavity QED with cooperativity far greater than unity enables high-fidelity quantum sensing and information processing. The high-cooperativity regime is often reached through the use of short, single-mode resonators. More complicated multimode resonators, such as the near-confocal optical Fabry-Pérot cavity, can provide intracavity atomic imaging in addition to high cooperativity. This capability has recently proved important for exploring quantum many-body physics in the driven-dissipative setting. In this work, we show that a confocal cavity QED microscope can realize cooperativity in excess of 110. This cooperativity is on par with the very best single-mode cavities (which are far shorter) and 21$\times$ greater than single-mode resonators of similar length and mirror radii. The 1.7-$μ$m imaging resolution is naturally identical to the photon-mediated interaction range. We measure these quantities by determining the threshold of cavity superradiance when small, optically tweezed Bose-Einstein condensates are pumped at various intracavity locations. Transmission measurements of an ex situ cavity corroborate these results. We provide a theoretical description that shows how cooperativity enhancement arises from the dispersive coupling to the atoms of many near-degenerate modes.

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