论文标题

分析$^{171} $ yb核自旋的总部位于Rydberg的OMG体系结构

Analyzing the Rydberg-based omg architecture for $^{171}$Yb nuclear spins

论文作者

Chen, Neville, Li, Lintao, Huie, William, Zhao, Mingkun, Vetter, Ian, Greene, Chris H., Covey, Jacob P.

论文摘要

中性碱土(类似)原子最近被用于原子阵列,具有单独的读数,对照和高保真性Rydberg介导的纠缠。这个新兴平台提供了广泛的新量子科学应用程序,可利用这种原子的独特特性:超纳罗光学“时钟”过渡和孤立的核自旋。具体而言,这些特性提供了光学量子(“ O”)以及地面(“ G”)和亚稳态(“ M”)核自旋Qubits,它们均在一个原子中。我们考虑对这种“ OMG”体系结构的实验现实控制及其与Rydberg国家的耦合,以纠缠生成,专门针对Ytterbium-171($^{171} \ text {yb} $),带有核旋转$ i = 1/2 $。我们分析了$^{171} \ text {yb} $的$ s $ series rydberg状态,由三个旋转 - $ 1/2 $成分(两个电子和核)描述。我们确认$ f = 3/2 $歧管(一种独特的旋转配置)非常适合纠缠核自旋量子。此外,我们使用多通道量子缺陷理论分析了$ f = 1/2 $系列 - 由两个重叠的旋转配置描述。我们研究核自旋的多层动力学在驱动时钟或rydberg频率$ω__\ text {c} =2π\ times 200 $ kHz或$ω__\ text {r} =2π\ text =2π\ times 6 $ 6 $ MHz分别找到该模型的磁场($ compible)($ compible coptece)(强度纯度($ \ lyssim0.99 $)足以满足超过0.99的门贴。

Neutral alkaline earth(-like) atoms have recently been employed in atomic arrays with individual readout, control, and high-fidelity Rydberg-mediated entanglement. This emerging platform offers a wide range of new quantum science applications that leverage the unique properties of such atoms: ultra-narrow optical "clock" transitions and isolated nuclear spins. Specifically, these properties offer an optical qubit ("o") as well as ground ("g") and metastable ("m") nuclear spin qubits, all within a single atom. We consider experimentally realistic control of this "omg" architecture and its coupling to Rydberg states for entanglement generation, focusing specifically on ytterbium-171 ($^{171}\text{Yb}$) with nuclear spin $I = 1/2$. We analyze the $S$-series Rydberg states of $^{171}\text{Yb}$, described by the three spin-$1/2$ constituents (two electrons and the nucleus). We confirm that the $F = 3/2$ manifold -- a unique spin configuration -- is well suited for entangling nuclear spin qubits. Further, we analyze the $F = 1/2$ series -- described by two overlapping spin configurations -- using a multichannel quantum defect theory. We study the multilevel dynamics of the nuclear spin states when driving the clock or Rydberg transition with Rabi frequency $Ω_\text{c} = 2 π\times 200$ kHz or $Ω_\text{R} = 2 π\times 6$ MHz, respectively, finding that a modest magnetic field ($\approx200\,\text{G}$) and feasible laser polarization intensity purity ($\lesssim0.99$) are sufficient for gate fidelities exceeding 0.99.

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