Hao Qiang, Yang Shaojie, Zheng Shuguang, Yun Peter, Ruan Jun, Zhang Shougang
Key Laboratory of Time Reference and Applications, National Time Service Center, Chinese Academy of Sciences, Xi'an 710600, China.
University of Chinese Academy of Sciences, Beijing 100049, China.
Rev Sci Instrum. 2024 Aug 1;95(8). doi: 10.1063/5.0219868.
The pulsed optically pumped (POP) atomic clock has demonstrated unexpected performance in terms of frequency stability and drift. However, it remains a huge challenge to make this type of atomic clock more compact. Herein, we report the design of a miniaturized physics package, which is equipped with a magnetron microwave cavity holding a vapor cell of 1.3 cm internal diameter. The Zeeman transition spectrum reveals that the microwave cavity resonates in TE011-like mode. Based on a low-noise testbed, we also quantitatively analyze the relaxation time, linewidth, and noise sources of the resulting POP atomic clock. The population and coherence relaxation time are measured to be 3.16(0.16) and 2.97(0.03) ms under the temperature of 333 K, which are compatible well with the theoretical calculation. The Ramsey signal shows a contrast of 35% and a linewidth of 192 Hz. The total volume of the physics package is about 44 cm3, including a layer of magnetic shielding. The short-term frequency stability is measured to be 4.8 × 10-13τ-1/2 (where τ is the averaging time), which is mainly limited by the relative intensity noise of the laser system.
脉冲光泵浦(POP)原子钟在频率稳定性和漂移方面展现出了意想不到的性能。然而,使这类原子钟更加紧凑仍然是一个巨大的挑战。在此,我们报告了一种小型化物理封装的设计,该封装配备了一个磁控管微波腔,腔内装有内径为1.3厘米的汽室。塞曼跃迁光谱表明,微波腔以类似TE011的模式共振。基于一个低噪声测试平台,我们还对所得POP原子钟的弛豫时间、线宽和噪声源进行了定量分析。在333K的温度下,粒子数和相干弛豫时间分别测得为3.16(0.16)和2.97(0.03)毫秒,与理论计算结果吻合良好。拉姆齐信号的对比度为35%,线宽为192赫兹。物理封装的总体积约为44立方厘米,包括一层磁屏蔽。测得的短期频率稳定性为4.8×10-13τ-1/2(其中τ为平均时间),这主要受激光系统相对强度噪声的限制。