论文标题

腔体辅助制备和统一费米气体的检测

Cavity-assisted preparation and detection of a unitary Fermi gas

论文作者

Roux, Kevin, Helson, Victor, Konishi, Hideki, Brantut, Jean-Philippe

论文摘要

我们报告了在高技巧腔中具有可调相互作用的费米气体的快速产生和弱破坏性检测。该腔均具有远距离的光线,以形成深度的光学偶极陷阱,并带有近谐振的光,以达到强烈的光耦合方案。基于空腔的偶极陷阱可有效捕获激光冷却原子,并且使用晶格融合方案使得可以进行有效的升压内蒸发性冷却。在交叉的光学偶极子陷阱中转移后,我们产生了深度退化的统一费米气体,腔体内的$ 7 \ cdot 10^5 $原子,总体$ 2.85 $ S长序列。然后,用近乎谐振的光探测腔体,以对单个云的种群进行五百倍的色散测量,从而使单个样本对慢的原子数变化的弱破坏性观察。该平台将使运输和动力学的实时观察以及驱动驱动性,密切相关的量子物质的研究可能。

We report on the fast production and weakly destructive detection of a Fermi gas with tunable interactions in a high finesse cavity. The cavity is used both with far off-resonant light to create a deep optical dipole trap, and with near-resonant light to reach the strong light-matter coupling regime. The cavity-based dipole trap allows for an efficient capture of laser-cooled atoms, and the use of a lattice-cancellation scheme makes it possible to perform efficient intra-cavity evaporative cooling. After transfer in a crossed optical dipole trap, we produce deeply degenerate unitary Fermi gases with up to $7 \cdot 10^5$ atoms inside the cavity, with an overall $2.85$ s long sequence. The cavity is then probed with near-resonant light to perform five hundred-times repeated, dispersive measurements of the population of individual clouds, allowing for weakly destructive observations of slow atom-number variations over a single sample. This platform will make possible the real-time observation of transport and dynamics as well as the study of driven-dissipative, strongly correlated quantum matter.

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