论文标题

固定二维离子胶合的双EIT地面冷却

Double-EIT Ground-State Cooling of Stationary Two-Dimensional Ion Lattices

论文作者

Qiao, Mu, Wang, Ye, Cai, Zhengyang, Du, Botao, Wang, Pengfei, Luan, Chunyang, Chen, Wentao, Noh, Heung-Ryoul, Kim, Kihwan

论文摘要

我们从理论上和实验研究了二维离子晶体限制在保罗陷阱中的二维离子晶体的双电磁透明度(双EIT)冷却。对于具有时钟状态的\ yb离子,观察到双EIT基态冷却,为此,EIT冷却并未像许多其他简单的$λ$ -Scheme的离子那样实现。 $ \ dot {\ bar n} = 34〜(\ pm1.8)〜\ rm {ms}^{ - 1} $和$ \ bar n = 0.06〜(\ pm 0.059)$的冷却率。测得的冷却速率和极限与理论预测一致。我们对具有多达12个离子的二维(2D)晶体的横向模式进行双EIT冷却。在我们的2D晶体中,微功能和横向模式的方向是垂直的,这使它们被解耦。因此,横向模式上的冷却不会受到微功能的干扰,这在我们的实验中得到了证实。对于12个离子晶体的质量模式中心,我们观察到冷却速率和冷却极限与单个离子的冷却速率,包括与离子数成正比的加热速率。该方法可以扩展到其他超细量子尺,并且具有大量离子的固定2D晶体的接近地面冷却可能会推进量子信息科学领域。

We theoretically and experimentally investigate double electromagnetically induced transparency (double-EIT) cooling of two-dimensional ion crystals confined in a Paul trap. The double-EIT ground-state cooling is observed for \Yb ions with clock state, for which EIT cooling has not been realized like many other ions with a simple $Λ$-scheme. A cooling rate of $\dot{\bar n}=34~(\pm1.8)~\rm{ms}^{-1}$ and a cooling limit of $\bar n=0.06~(\pm 0.059)$ are observed for a single ion. The measured cooling rate and limit are consistent with theoretical predictions. We apply double-EIT cooling to the transverse modes of two-dimensional (2D) crystals with up to 12 ions. In our 2D crystals, the micromotion and the transverse mode directions are perpendicular, which makes them decoupled. Therefore, the cooling on transverse modes is not disturbed by micromotion, which is confirmed in our experiment. For the center of mass mode of a 12 ions crystal, we observe a cooling rate and a cooling limit that are consistent with those of a single ion, including heating rates proportional to the number of ions. This method can be extended to other hyperfine qubits, and near ground-state cooling of stationary 2D crystals with large numbers of ions may advance the field of quantum information sciences.

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