论文标题

带有微波式rydberg原子的多波段原子蜡烛

A multi-band atomic candle with microwave-dressed Rydberg atoms

论文作者

Cai, Yafen, Shi, Shuai, Zhou, Yijia, Yu, Jianhao, Tian, Yali, Li, Yitong, Zhang, Kuan, Du, Chenhao, Li, Weibin, Li, Lin

论文摘要

将重要的物理量稳定为基于原子的标准位于现代原子,分子和光学物理学的核心,并广泛应用于精度计量学领域。尤其重要的是基于原子的微波场振幅稳定剂,即所谓的原子蜡烛。以前的原子蜡烛是通过其基态原子实现的,因此缺乏频带可调性和较小的稳定带宽,严重限制了它们的发育和潜在应用。为了应对这些局限性,我们采用微波底层的Rydberg原子来实现一种新型的原子蜡烛,具有多波段频率可调性和较大的稳定带宽。我们证明了从C波段到KA波段的微波场的振幅稳定,通过探索丰富的Rydberg水平,可以将其扩展到准DC和Terahertz字段。我们的原子蜡烛可实现100 Hz的稳定带宽,超过两个以上的数量级以上的稳定带宽。我们的模拟表明稳定带宽可以进一步增加到100 kHz。我们的工作铺平了一条途径,以开发新型的电场控制和应用,并具有噪声,微型,敏感和宽带原子蜡烛。

Stabilizing important physical quantities to atom-based standards lies at the heart of modern atomic, molecular and optical physics, and is widely applied to the field of precision metrology. Of particular importance is the atom-based microwave field amplitude stabilizer, the so-called atomic candle. Previous atomic candles are realized with atoms in their ground state, and hence suffer from the lack of frequency band tunability and small stabilization bandwidth, severely limiting their development and potential applications. To tackle these limitations, we employ microwave-dressed Rydberg atoms to realize a novel atomic candle that features multi-band frequency tunability and large stabilization bandwidth. We demonstrate amplitude stabilization of microwave field from C-band to Ka-band, which could be extended to quasi-DC and terahertz fields by exploring abundant Rydberg levels. Our atomic candle achieves stabilization bandwidth of 100 Hz, outperforming previous ones by more than two orders of magnitude. Our simulation indicates the stabilization bandwidth can be further increased up to 100 kHz. Our work paves a route to develop novel electric field control and applications with a noise-resilient, miniaturized, sensitive and broadband atomic candle.

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