氧化铟锡薄膜遇到圆形里德伯原子:新量子模拟方案的前景

F. Meinert, C. Hölzl, M. Nebioğlu, Alessandro D'Arnese, Philipp Karl, M. Dressel, M. Scheffler
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引用次数: 9

摘要

在基于里德堡的量子模拟中,长寿命的圆形里德堡原子对提高相干时间越来越感兴趣。我们设计了一种新的方法来稳定圆形里德堡态,防止自发和黑体诱导的衰减,使用由氧化铟锡(ITO)薄膜制成的抑制电容器,该电容器结合了微波反射和可见光谱范围内的透明度。为此,我们在GHz和THz频率下使用互补光谱方法对这些薄膜进行了详细的表征,并确定了在室温环境下允许达到循环状态寿命长达数十毫秒的条件。我们讨论了我们的发现的前景,鉴于追求量子模拟高$ $n$圆里德伯态在室温下。
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Indium tin oxide films meet circular Rydberg atoms: Prospects for novel quantum simulation schemes
Long-lived circular Rydberg atoms are picking up increasing interest for boosting coherence times in Rydberg-based quantum simulation. We elaborate a novel approach to stabilize circular Rydberg states against spontaneous and blackbody-induced decay using a suppression capacitor made from indium tin oxide (ITO) thin films, which combine reflection of microwaves with transparency in the visible spectral range. To this end, we perform detailed characterization of such films using complementary spectroscopic methods at GHz and THz frequencies and identify conditions that allow for reaching circular-state lifetimes up to tens of milliseconds in a room-temperature environment. We discuss prospects of our findings in view of the quest for quantum simulations with high-$n$ circular Rydberg states at room temperature.
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