论文标题

随机填充对旋转挤压的影响通过光学时钟

Impacts of random filling on spin squeezing via Rydberg dressing in optical clocks

论文作者

Van Damme, Jacques, Zheng, Xin, Saffman, Mark, Vavilov, Maxim G., Kolkowitz, Shimon

论文摘要

我们通过rydberg调料分析了带有随机分数填充的光学晶格时钟的旋转挤压。我们比较了不同晶格几何形状中可实现的时钟稳定性,包括充满统一的镊子时钟阵列和尺寸不同的分数填充晶格时钟。我们以近似分析表达式和拟合功能的形式提供了实际的考虑因素和有用的工具,以帮助实施Rydberg-wasted旋转挤压。我们证明,在一个,二维和三维光学晶格中通过Rydberg敷料进行自旋挤压可以在存在随机分数填充的情况下可显着改善稳定性。

We analyze spin squeezing via Rydberg dressing in optical lattice clocks with random fractional filling. We compare the achievable clock stability in different lattice geometries, including unity-filled tweezer clock arrays and fractionally filled lattice clocks with varying dimensionality. We provide practical considerations and useful tools in the form of approximate analytical expressions and fitting functions to aid in the experimental implementation of Rydberg-dressed spin squeezing. We demonstrate that spin squeezing via Rydberg dressing in one-, two-, and three-dimensional optical lattices can provide significant improvements in stability in the presence of random fractional filling.

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