论文标题

高保真纠缠和检测碱 - 地球rydberg原子

High-Fidelity Entanglement and Detection of Alkaline-Earth Rydberg Atoms

论文作者

Madjarov, Ivaylo S., Covey, Jacob P., Shaw, Adam L., Choi, Joonhee, Kale, Anant, Cooper, Alexandre, Pichler, Hannes, Schkolnik, Vladimir, Williams, Jason R., Endres, Manuel

论文摘要

被困的中性原子已成为量子科学的杰出平台,在该平台中,使用高度兴奋的Rydberg州已经设定了纠缠忠诚度记录。但是,迄今为止,受控的两量纠缠的产生仅限于碱性物种,将更复杂的电子结构的开发作为开放式边界,可以改善忠诚度和从根本上不同的应用,例如量子增强的光学时钟。在这里,我们证明了一种新的方法,利用单个碱 - 地球rydberg原子的两价电子结构。我们发现Rydberg州检测,单原子行动和两种原子纠缠的保真度超过了先前发表的价值。我们的结果为新应用铺平了道路,包括可编程量子计量学和混合原子系统系统,并为基于碱性地点的量子计算体系结构奠定了基础。

Trapped neutral atoms have become a prominent platform for quantum science, where entanglement fidelity records have been set using highly-excited Rydberg states. However, controlled two-qubit entanglement generation has so far been limited to alkali species, leaving the exploitation of more complex electronic structures as an open frontier that could lead to improved fidelities and fundamentally different applications such as quantum-enhanced optical clocks. Here we demonstrate a novel approach utilizing the two-valence electron structure of individual alkaline-earth Rydberg atoms. We find fidelities for Rydberg state detection, single-atom Rabi operations, and two-atom entanglement surpassing previously published values. Our results pave the way for novel applications, including programmable quantum metrology and hybrid atom-ion systems, and set the stage for alkaline-earth based quantum computing architectures.

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