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Driving Rydberg-Rydberg Transitions from a Coplanar Microwave Waveguide

机译:从共面微波波导驱动里德伯格-里德伯格过渡

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The coherent interaction between ensembles of helium Rydberg atoms and microwave fields in the vicinity of a solid-state coplanar waveguide is reported. Rydberg-Rydberg transitions, at frequencies between 25 and 38 GHz, have been studied for states with principal quantum numbers in the range 30-35 by selective electric-field ionization. An experimental apparatus cooled to 100 K was used to reduce effects of blackbody radiation. Inhomogeneous, stray electric fields emanating from the surface of the waveguide have been characterized in frequency- and time-resolved measurements and coherence times of the Rydberg atoms on the order of 250 ns have been determined. These results represent a key element in the development of an experimental architecture to interface Rydberg atoms with solid-state devices.
机译:报道了氦Rydberg原子团与固态共面波导附近的微波场之间的相干相互作用。已经通过选择性电场电离研究了主量子数在30-35范围内的状态,研究了25-38 GHz之间的Rydberg-Rydberg跃迁。使用冷却至100 K的实验设备来减少黑体辐射的影响。在频率和时间分辨的测量中,已经表征了从波导表面发​​出的不均匀杂散电场,并确定了Rydberg原子的相干时间约为250 ns。这些结果代表了将里德堡原子与固态器件连接起来的实验体系结构发展的关键要素。

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